Nova Patents
IL274907A

Waveguide illuminator

Abstract

This record has no abstract on file.

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

201 claims: 144 independent, 57 dependent

  1. 1
    WHAT IS CLAIMED IS:1. A head mounted display system configured to project light to an eye of a user to display augmented reality image content in a vision field of the user, the headmounted display system comprising: a frame configured to be supported on a head of the user;at least one light source configured to output light;a spatial light modulator disposed to received light from the at least one light source;an eyepiece disposed on the frame, the eyepiece configured to direct light from the spatial light modulator into the eye of the user to display augmented reality image content to the vision field of the user, at least a portion of the eyepiece being transparent and disposed at a location in front of the eye of the user when the user wears the head-mounted display system, where the transparent portion transmits light from a portion of a physical environment in front of the user to the eye of the user to provide a view of the portion of the physical environment in front of the user, the eyepiece comprising: (a) at least one waveguide;(b) at least one in-coupling optical element configured to in-couple light from the spatial light modulator into the at least one waveguide;and (c) at least one out-coupling optical element configured to couple light guided within the waveguide out of the waveguide and direct the light to the eye of the user;and optics having optical power, the optics disposed so as to receive light output from the light source, the optics arranged with respect to the spatial light modulator such that the light received from the light source passes through the optics and illuminates the spatial light modulator, wherein the head-mounted display system is configured such that light illuminating the spatial light modulator is redirected back through the optics and is coupled into the at least one waveguide through the at least one in-coupling optical element and at least a portion of the coupled light is ejected from the at least one waveguide by the at least one out-coupling optical element and directed to the eye of the user.
  2. 2
    The head mounted display system of Claim 1, wherein the at least one light source comprises a multi-color light source configured to emit different color light at different times.
  3. 3
    The head mounted display system of any of the Claims above, wherein the at least one light source comprises a red, green, blue (RGB) light source configured to emit red color, green color, and blue color light at different times.
  4. 4
    The head mounted display system of any of the Claims above, wherein the at least one light source comprises a cyan, magenta, yellow (CMY) light source configured to emit cyan color, magenta color, and yellow color light at different times.
  5. 5
    The head mounted display system of any of the Claims above, comprising:a plurality of laterally displaced light emitters configured to output light;collection optics configured to collect the light from the plurality of light emitters;a diffuser;and a plurality of apertures proximal the diffuser.
  6. 6
    The head mounted display system of any of the Claims above, further comprising a coupling optic disposed with respect to the light emitters to collect light output from the light source.
  7. 7
    The head mounted display system of Claim 6, wherein the coupling optic comprises a compound parabolic collector (CPC).
  8. 8
    The head mounted display system of any of the Claims above, wherein the spatial light modulator comprises a reflective spatial light modulator.
  9. 9
    The head mounted display system of any of the Claims above, wherein the spatial light modulator comprises a liquid crystal spatial light modulator.
  10. 10
    The head mounted display system of any of the Claims above, wherein the spatial light modulator comprises a vertically aligned liquid crystal spatial light modulator.
  11. 11
    The head mounted display system of any of the claims above, wherein the spatial light modulator comprises a deflection-based spatial light modulator.
  12. 12
    The head mounted display system of any of the Claims above, wherein the spatial light modulator comprises an array of movable mirrors.
  13. 13
    The head mounted display system of any of the Claims above, further comprising a light dump, such that in the off state, light is directed by the array of movable mirrors to the light dump, and in the on-state light is directed to corresponding in-coupling optical elements.
  14. 14
    The head mounted display system of any of the Claims above, wherein the at least one waveguide comprises material that is transparent to visible light having a refractive index sufficient to guide light in the waveguide by total internal reflection.
  15. 15
    The head mounted display system of any of the Claims above, wherein the at least one waveguide comprises a stack of waveguides.
  16. 16
    The head mounted display system of Claim 15, wherein different waveguides of the stack of waveguides are configured to output light with different respective colors.
  17. 17
    The head mounted display system of Claim 15 or 16, wherein first, second, and third waveguides of the stack of waveguides are configured to output first, second, and third color light, respectively, the first, second, and third color light being red, blue, and green color light, respectively.
  18. 18
    The head mounted display system of any of Claims 15 to 16, wherein different waveguides of the stack of waveguides are configured to output light with different wavefronts having different amounts of at least one of divergence, convergence, and collimation as if projected from different distances from the user’s eye.
  19. 19
    The head mounted display system of any of the claims above, wherein the at least one waveguide is configured to in-couple light of a certain polarization.
  20. 20
    The head mounted display system of any of the claims above, wherein the incoupling optical element comprises at least one of a diffractive optical element and a reflector.
  21. 21
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises a plurality of color selective in-coupling optical elements configured to in-couple different respective colors.
  22. 22
    The head mounted display system of Claim 21, wherein the plurality of incoupling optical elements comprises a first in-coupling optical element and a second incoupling optical element, the second in-coupling optical element disposed over the first incoupling optical element such that light of a first color can be coupled by the first in-coupling optical element into a first waveguide to be guided therein and light of a second color different from the first color can pass through the first in-coupling optical element to the second in-coupling optical element and can be coupled by the second in-coupling optical element into a second waveguide to be guided therein.
  23. 23
    The head mounted display system of Claim 22, wherein the plurality of incoupling optical elements comprises a third in-coupling optical element disposed over the first in-coupling optical element and second in-coupling optical element such that light of a third color different from the first color and the second color can pass through the first incoupling optical element and the second in-coupling optical element to the third in-coupling optical element and can be coupled into a third waveguide to be guided therein.
  24. 24
    The head mounted display system of Claim 23, wherein the first color comprises one of red, green, and blue, wherein the second color comprises one of red, green, and blue different than said first color, and wherein the third color comprises one of red, green, or blue different from said first and second colors.
  25. 25
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises an in-coupling optical element configured to couple light of multiple colors into a waveguide of the at least one waveguide to guide the light therein.
  26. 26
    The head mounted display system of any of the above claims, wherein the at least one light source comprises a light source disposed with respect to the optics and the spatial light modulator to direct light to the in-coupling optical element configured to couple light of multiple colors into a waveguide of the at least one waveguide, the light source configured to emit different color light at different times.
  27. 27
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises an in-coupling optical element configured to couple red light, green light, and blue light into a waveguide of the at least one waveguide to guide the light therein.
  28. 28
    The head mounted display system of any of the claims above, wherein the at least one in-coupling optical element is configured to in-couple light of a predetermined polarization.
  29. 29
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises a plurality of in-coupling optical elements laterally displaced with respect to each other.
  30. 30
    The head mounted display system of Claim 29, wherein the plurality of incoupling optical elements comprises a first in-coupling optical element configured to couple light of multiple colors into a first waveguide of the at least one waveguide to guide the light therein and a second in-coupling optical element configured to couple light of multiple colors into a second waveguide of the at least one waveguide to guide the light therein, the first incoupling optical element and the second in-coupling optical element laterally displaced with respect to each other.
  31. 31
    The head mounted display system of Claims 29 or 30, wherein the at least one light source comprises a first light source disposed with respect to the optics and the spatial light modulator to direct light to the first in-coupling optical element and a second light source disposed with respect to the optics and the spatial light modulator to direct light to the second in-coupling optical element.
  32. 32
    The head mounted display system of Claim 30, wherein the at least one light source comprises a first light source disposed with respect to the optics and the spatial light modulator to direct light into the first in-coupling optical element, the first light source configured to emit different color light at different times.
  33. 33
    The head mounted display system of Claim 32, wherein the at least one light source comprises a second light source disposed with respect to the optics and the spatial light modulator to direct light into the second in-coupling optical element, the second light source configured to emit different color light at different times.
  34. 34
    The head mounted display system of Claim 33, wherein the eyepiece is configured such that light out-coupled from the first waveguide and light out-coupled from said second waveguide have different amounts of at least one of convergence, divergence, and collimation and thus appear to originate from different depths.
  35. 35
    The head mounted display system of Claims 31-34, wherein the eyepiece is configured such that light out-coupled from the first waveguide is collimated and light output from the second waveguide diverges. -Ill
  36. 36
    The head mounted display system of Claims 31-34, wherein the eyepiece is configured such that light out-coupled from the first waveguide diverges a first amount and light out-coupled from the second waveguide diverge a second amount, where the second amount is different from the first amount.
  37. 37
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises an in-coupling optical element configured to couple red light, green light, and blue light into a waveguide to guide the light therein.
  38. 38
    The head mounted display system of any of the above claims, wherein the at least one light source comprises a light source disposed with respect to the optics and the spatial light modulator to direct light into the at least one in-coupling optical element configured to couple red light, green light, and blue light into a waveguide of the at least one waveguide, the at least one light source configured to emit different red, green, and blue color light at different times.
  39. 39
    The head mounted display system of Claims 31, wherein the first light source is a first color light source and the second light source is a second color light source having a color different from the first color.
  40. 40
    The head mounted display system of Claims 39, wherein the first light source is a red light source and the second color light source is one of a green light source and blue color light source.
  41. 41
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises a plurality of groups of in-coupling optical elements, each group comprising a plurality of color selective in-coupling optical elements configured to in-couple different respective colors, each group of the plurality of groups laterally displaced with respect to each other.
  42. 42
    The head mounted display system of Claim 41, wherein the plurality of incoupling optical elements comprises a first in-coupling optical element and a second incoupling optical element, the second in-coupling optical element disposed over the first incoupling optical element such that light of a first color can be coupled by the first in-coupling optical element into a first waveguide to be guided therein and light of a second color different from the first color can pass through the first in-coupling optical element to the second in-coupling optical element and can be coupled by the second in-coupling optical element into a second waveguide to be guided therein.
  43. 43
    The system of Claim 42, wherein the plurality of in-coupling optical elements comprises a third in-coupling optical element disposed over the second in-coupling optical element such that a third color different from the first color and the second color can pass through the first in-coupling optical element and second in-coupling optical element to the third in-coupling optical element and can be coupled into a third waveguide to be guided therein.
  44. 44
    The head mounted display system of Claim 43, wherein the first color comprises one of red, green, and blue, wherein the second color comprises one of red, green, and blue different than said first color, and wherein the third color comprises one of red, green, or blue different from said first and second colors.
  45. 45
    The head mounted display system of any of the above claims, wherein the at least one in-coupling optical element comprises a first group of in-coupling optical elements and a second group of in-coupling optical elements, the first group of in-coupling optical elements comprising a plurality of color selective in-coupling optical elements configured to in-couple different respective colors and the second group of in-coupling optical elements comprising a plurality of color selective in-coupling optical elements configured to in-couple different respective colors, the first group and the second group laterally displaced with respect to each other.
  46. 46
    The head mounted display system of Claim 45, wherein the first plurality of in-coupling optical elements comprise a first in-coupling optical element and a second incoupling optical element, the second in-coupling optical element disposed over the first incoupling optical element such that light of a first color can be coupled by the first in-coupling optical element into a first waveguide to be guided therein and a second color different from the first color can pass through the first in-coupling optical element to the second in-coupling optical element and can be coupled by the second in-coupling optical element into a second waveguide to be guided therein.
  47. 47
    The head mounted display system of Claim 46, wherein the first plurality of in-coupling optical elements comprises a third in-coupling optical element disposed over the first in-coupling optical element and the second in-coupling optical element such that a third color different from the first color and the second color can pass through the first in-coupling optical element and the second in-coupling optical element to the third in-coupling optical element and can be coupled into a third waveguide to be guided therein.
  48. 48
    The head mounted display system of Claim 47, wherein the first color comprises one of red, green, and blue, wherein the second color comprises one of red, green, and blue different than said first color, and wherein the third color comprises one of red, green, or blue different from said first and second colors.
  49. 49
    The head mounted display system of Claim 48, wherein a second plurality of in-coupling optical elements comprises a fourth in-coupling optical element and a fifth incoupling optical element, the fifth in-coupling optical element disposed over the fourth incoupling optical element such that light of a fourth color can be coupled by the fourth incoupling optical element into a fourth waveguide to be guided therein and a fifth color different from the first color can pass through the fourth in-coupling optical element to the fifth in-coupling optical element and can be coupled by the second in-coupling optical element into a fifth waveguide to be guided therein.
  50. 50
    The head mounted display system of Claim 49, wherein the second plurality of in-coupling optical elements comprises a sixth in-coupling optical element disposed over the fourth in-coupling optical element and fifth in-coupling optical element such that a sixth color different from the first color and the second color can pass through the fourth incoupling optical element and the fifth in-coupling optical element to the sixth in-coupling optical element and can be coupled into a sixth waveguide to be guided therein.
  51. 51
    The head mounted display system of Claim 50, wherein the eyepiece is configured such that light out-coupled from the first waveguide, the second waveguide, and the third waveguide have different amounts of at least one of convergence, divergence, and collimation than light out-coupled from the fourth waveguide, the fifth waveguide, and the sixth waveguide and thus appear to originate from different depths than the light output from the fourth waveguide, the fifth waveguide, and the sixth waveguide.
  52. 52
    The head mounted display system of Claim 51, wherein the eyepiece is configured such that the light out-coupled from the first waveguide, the second waveguide, and the third waveguide is collimated and the light output from the fourth waveguide, fifth waveguide, and the sixth waveguide diverges.
  53. 53
    The head mounted display system of Claim 52, wherein the eyepiece is configured such that the light out-coupled from the first waveguide, the second waveguide, and the third waveguide diverges and the light output from the fourth waveguide, the fifth waveguide, and the sixth waveguide diverges a different amount.
  54. 54
    The head mounted display system of any of Claims 45-53, wherein the at least one light source comprises a first source disposed with respect to the optics and the spatial light modulator to direct light into the first group of in-coupling optical elements, the first light source being configured to emit different color light at different times.
  55. 55
    The head mounted display system of any of Claims 45-54, wherein the at least one light source comprises a second light source disposed with respect to the optics and the spatial light modulator to direct light into the second group of in-coupling optical elements, the second light source also being configured to emit different color light at different times.
  56. 56
    The head mounted display system of any of the claims above, wherein the at least one out-coupling optical element comprises a diffractive optical element.
  57. 57
    The head mounted display system of any of the claims above, wherein the at least one out-coupling element is configured to increase dimensions of an eyebox along at least one first axis.
  58. 58
    The head mounted display system of Claim 57, further comprising an orthogonal pupil expander comprising at least one light redirecting element in or on the at least one waveguide that is configured to increase dimensions of the eyebox along a second axis that is orthogonal to the at least one first axis.
  59. 59
    The head mounted display system of Claim 58, wherein the at least one light redirecting element comprises a diffractive optical element.
  60. 60
    The head mounted display system of any of the above claims, wherein at least a portion of the at least one waveguide extends between the at least one light source and the optics, light from the at least one light source that is directed through the optics passing through the portion of the at least one waveguide to the optics.
  61. 61
    The head mounted display system of any of the above claims, wherein the at least one waveguide has a first side and a second side opposite the first side, the optics and the spatial light modulator disposed on the first side such that light from the spatial light modulator is directed onto the first side.
  62. 62
    The head mounted display system of Claim 61, wherein the at least one light source is disposed on the first side such that light from the at least one light source is incident on the first side prior to passing through the optics to the spatial light modulator.
  63. 63
    The head mounted display system of Claim 61, wherein the at least one light source is disposed on the second side such that light from the at least one light source is incident on the second side prior to passing through the optics to the spatial light modulator.
  64. 64
    The head mounted display system of Claim 63, wherein the at least one waveguide is disposed between the at least one light source and the optics.
  65. 65
    The head mounted display system of any of the above claims, further comprising a light source in-coupling optical element disposed with respect to a portion of the at least one waveguide proximal to the at least one light source so as to receive light from the at least one light source and to couple light from the at least one light source into the portion of the at least one waveguide so as to be guided therein.
  66. 66
    The system of Claim 65, further comprising an out-coupling optical element with respect to the portion of the at least one waveguide proximal the light source that is configured to direct light guided in the portion of the at least one waveguide out of the portion of the at least one waveguide through the optics and to the spatial light modulator.
  67. 67
    The head mounted display system of Claim 66, wherein the head mounted display system is configured such that at least a portion of the light coupled into the optics from the portion of the at least one waveguide proximal the at least one light source is incident on the spatial light modulator, passes through the optics again, is incident onto a second portion of the at least one waveguide, guided therein again, out-coupled therefrom and directed to the eye of the user.
  68. 68
    The head mounted display system of any of Claims 65 to 67, further comprising an isolator to reduce cross-talk from the portion of the at least one waveguide proximal to the light source into the second portion of the at least one waveguide.
  69. 69
    The head mounted display system of Claim 68, wherein the isolator comprises one of an opaque surface and reflective surface.
  70. 70
    The system of Claim 58, wherein the isolator is disposed in the at least one waveguide.
  71. 71
    The head mounted display system of any Claims 65-70, wherein the at least one waveguide has a first side and a second side opposite the first side, the optics and the spatial light modulator disposed on the first side of the at least one waveguide.
  72. 72
    The head mounted display system of Claim 71, wherein the at least one light source is disposed on the first side of the at least one waveguide such that light from the at least one light source is incident on the first side of the at least one waveguide to be guided therein and light guided in the portion of the at least one waveguide is coupled out of the first side of the at least one waveguide and to the optics and the spatial light modulator on the first side.
  73. 73
    The head mounted display system of Claim 71, wherein the at least light source is disposed on the second side of at least one waveguide such that light from the at least one light source is incident on the second side of the at least one waveguide prior to passing through the optics to the spatial light modulator.
  74. 74
    The head mounted display system of Claims 71 or 73, wherein the at least one waveguide is disposed between the at least one light source and the optics.
  75. 75
    The head mounted display system of any of the above claims, further comprising at least one waveguide optically coupled to the at least one light source to receive light from the at least one light source, to guide light from the at least one light source therein, and to couple light guided therein into the optics such that at least a portion of the light coupled into the optics from the at least one waveguide is incident on the spatial light modulator, passes through the optics again and is incident onto the at least one waveguide, guided therein, out-coupled therefrom and directed to the eye of the user.
  76. 76
    The head mounted display system of Claim 75, further comprising an incoupling element disposed on the at least one waveguide to receive light from the light source and couple light from the light source into the at least one waveguide to be guided therein.
  77. 77
    The head mounted display system of Claim 76, further comprising an outcoupling element disposed on the at least one waveguide to receive the light guided within the at least one waveguide from the light source and couple the light guided in the at least one waveguide out of the at least one waveguide and through the optics to the spatial light modulator.
  78. 78
    The head mounted display system of any of Claims 75 to 77, further comprising an isolator to reduce cross-talk between the at least one waveguide and the at least one waveguide.
  79. 79
    The head mounted display system of Claim 78, wherein the isolator comprises at least one of an opaque and reflective surface.
  80. 80
    The head mounted display system of Claim 78 or 79, wherein the isolator is disposed in or on the at least one waveguide.
  81. 81
    The head mounted display system of any Claims 75-80, wherein the at least one waveguide has a first side and a second side opposite said first side, the optics and the spatial light modulator disposed on the first side of the at least one waveguide.
  82. 82
    The head mounted display system of Claim 81, wherein the at least one light source is disposed on the first side of the at least one waveguide such that light from the at least one light source is incident on the first side of the at least one waveguide to be guided therein and light guided in the at least one waveguide is coupled out of the first side of the at least one waveguide to the optics and the spatial light modulator on the first side.
  83. 83
    The head mounted display system of Claim 81, wherein the at least one light source is disposed on the second side of at least one waveguide such that light from the at least one light source is incident on the second side of the at least one waveguide to be guided therein and light guided in the at least one light guide is coupled out of the first side of the at least one waveguide to the optics and the spatial light modulator on the first side.
  84. 84
    The head mounted display system of Claims 81 or 83, wherein the at least one waveguide is disposed between the at least one light source and the optics.
  85. 85
    The head mounted display system of any of the above claims, wherein the optics comprises one or more lenses.
  86. 86
    The head mounted display system of any of the above claims, wherein the optics comprises a plurality of lenses.
  87. 87
    The head mounted display system of any of the above claims, wherein the optics has positive power.
  88. 88
    The head mounted display system of any of the above claims, wherein the optics comprises one or more refractive optical elements.
  89. 89
    The head mounted display system of any of the above claims, wherein the spatial light modulator is configured to modulate polarization.
  90. 90
    The head mounted display system of any of the above claims, further comprising an analyzer in an optical path between the spatial light modulator and the eye of the user.
  91. 91
    The head mounted display system of Claim 90, wherein the analyzer is disposed in an optical path between the optics and the at least one in-coupling optical element.
  92. 92
    The head mounted display system of any of the above claims, further comprising a polarizer disposed between the at least one light source and the spatial light modulator.
  93. 93
    The head mounted display system of any of the above claims, wherein the at least one light source comprises a polarized light source.
  94. 94
    The head mounted display system of any of the claims above, wherein a polarizer is disposed between the optics and the spatial light modulator.
  95. 95
    The head mounted display system of 94, wherein the polarizer is disposed directly on the spatial light modulator.
  96. 96
    The head mounted display system of any of the claims above, where the polarizer comprises a wire grid polarizer.
  97. 97
    The head mounted display system of Claim 90, wherein the analyzer is a circular polarizer.
  98. 98
    The head mounted display system of any of the above claims, further comprising a variable optical element with adjustable optical power.
  99. 99
    The head mounted display system of Claim 98, wherein the variable optical element comprises a lens or mirror.
  100. 100
    The head mounted display system of Claim 98 or 99, wherein the variable optical element is configured to have a first state and second states wherein in the first state the variable optical element has a different optical power than when in the second state.
  101. 101
    The head mounted display system of Claim 100, wherein the variable optical element has a negative optical power in the first state and has zero optical power in the second state.
  102. 102
    The head mounted display system of Claim 100, wherein the variable optical element has a positive optical power in the first state and has zero optical power in the second state.
  103. 103
    The head mounted display system of Claim 100, wherein the variable optical element has a first negative optical power in the first state and has a second different negative optical power in the second state.
  104. 104
    The head mounted display system of Claim 100, wherein the variable optical element has a first positive optical power in the first state and has a second different positive optical power in the second state.
  105. 105
    The head mounted display system of Claim 100, wherein the variable optical element has a first negative optical power in the first state and has a second positive optical power in the second state.
  106. 106
    The head mounted display system of Claim 98, wherein the variable optical element comprises a liquid lens.
  107. 107
    The head mounted display system of any of the claims above, further comprising an adjustable dimmer comprising optical elements that provide variable attenuation of light that is transmitted therethrough.
  108. 108
    The head mounted display system of any of the claims above, further comprising a prescription lens configured to provide refractive correction of the eye of the user.
  109. 109
    The head mounted display system of any of the claims above, further comprising a static lens disposed in the path between the at least one waveguides and the user’s eye.
  110. 110
    The head mounted display system of Claim 91, wherein the analyzer is configured to also serve as a polarizer to light propagating from the light source to the optics.
  111. 111
    The head mounted display system of any of the claims above, further comprising a color filter array disposed on a side of the waveguide proximate the user, wherein the color filter array comprises a plurality of different color filters.
  112. 112
    The head mounted display system of 111, wherein the color filter array comprises an absorbing material disposed between the color filters, configured to reduce propagation and reflection of stray light.
  113. 113
    The head mounted display system of any of the claims above, wherein a polarizer may be disposed in an optical path of the light source and configured to transmit light of a first polarization and reflect light of a second polarization, wherein a portion of the reflected light of the second polarization directed toward the light source obtains the first polarization.
  114. 114
    The head mounted display system of Claim 113, wherein a portion of the reflected light of the second polarization directed toward the light source obtains the first polarization by reflecting off coupling optics disposed to collect light from the light sources.
  115. 115
    The head mounted display system of any of the claims above, further comprising a quarter wave plate.
  116. 116
    The head mounted display system of any of the claims above, further comprising a compensator configured to provide more consistent orthogonal rotation of the light.
  117. 117
    The head mounted display system of any of the claims above, wherein the optics and spatial light modulator are tilted relative to on another.
  118. 118
    The head mounted display system of any of the claims above, wherein the coupling optics, optics, and spatial light modulator are tilted relative to the eyepiece.
  119. 119
    The head mounted display system of any of the claims above, wherein the coupling optics, optics, and spatial light modulator are tilted relative to the eyepiece.
  120. 120
    The head mounted display system of any of the claims above, light from the light source is configured to be recycled or reclaimed.
  121. 121
    The head mounted display system of any of the claims above, further comprising a polarizer configured to transmit light from said light source having a first polarization to said optics and reflect light having a second different polarization back toward said light source.
  122. 122
    The head mounted display system of any of the claims above, further comprising a coupling element between said light source and said polarizer that converts at least some of said light of said second polarization reflected by said polarizer into light of said first polarization.
  123. 123
    The head mounted display system of any of the claims above, where said light source comprises a plurality of laterally displaced light emitters configured to output light.
  124. 124
    The head mounted display system of any of the claims above, further comprising collection optics or a coupling element configured to collect the light from the plurality of light emitters.
  125. 125
    The head mounted display system of any of the claims above, further comprising a diffuser in an optical path between said light source and said optics.
  126. 126
    The head mounted display system of any of the claims above, further comprising one or more apertures between said light source and said optics.
  127. 127
    The head mounted display system of any of the claims above, further comprising a plurality of apertures between said light source and said optics.
  128. 128
    The head mounted display system of any of the claims above, further a diffuser and a plurality of apertures between said light source and said optics, said diffuser proximal said apertures.
  129. 129
    The head mounted display system of any of the claims above, wherein said light source comprises one or more laser diodes.
  130. 130
    The head mounted display system of any of the claims above, further comprising a coupling optic disposed with respect to the light source to collect light output from the light source.
  131. 131
    The head mounted display system of Claim 130, wherein the coupling optic comprises a compound parabolic collector (CPC).
  132. 132
    The head mounted display system of any of the claims above, further comprising a collection optics disposed with respect to the light source to collect light output from the light source.
  133. 133
    The head mounted display system of any of the claims above, wherein said collection optics comprised one or more lenses.
  134. 134
    The head mounted display system of any of the claims above, wherein said collection optics comprised a plurality of lenses.
  135. 135
    The head mounted display system of any of the claims above, further comprising a quarter wave retarder between the light source and optics.
  136. 136
    The head mounted display system of any of the claims above, wherein a polarizer is affixed to the spatial light modulator.
  137. 137
    The head mounted display system of any of the claims above, wherein a polarizer is adhered to the spatial light modulator with adhesive.
  138. 138
    The head mounted display system of any of the claims above, wherein a polarizer is adhered to the spatial light modulator using a mechanical fixture.
  139. 139
    The head mounted display system of any of the claims above, wherein a compensator is affixed to the spatial light modulator.
  140. 140
    The head mounted display system of any of the claims above, wherein a compensator is adhered to the spatial light modulator with adhesive.
  141. 141
    The head mounted display system of any of the claims above, wherein a compensator is adhered to the spatial light modulator using a mechanical fixture.
  142. 142
    The head mounted display system of any of the claims above, wherein a retarder is affixed to the spatial light modulator.
  143. 143
    The head mounted display system of any of the claims above, wherein a retarder is adhered to the spatial light modulator with adhesive.
  144. 144
    The head mounted display system of any of the claims above, wherein a retarder is adhered to the spatial light modulator using a mechanical fixture.
  145. 145
    The head mounted display system of any of the claims above, wherein a quarter wave retarder is affixed to the spatial light modulator.
  146. 146
    The head mounted display system of any of the claims above, wherein a quarter wave retarder is adhered to the spatial light modulator with adhesive.
  147. 147
    The head mounted display system of any of the claims above, wherein a quarter wave retarder is adhered to the spatial light modulator using a mechanical fixture.
  148. 148
    The head mounted display system of any of the claims above, where the polarizer comprises a wire grid polarizer.
  149. 149
    The head mounted display system of any of the claims above, further comprising a circular polarizer between said spatial light modulator and said in-coupling optical element.
  150. 150
    The head mounted display system of Claiml49, wherein the circular polarizer comprises a linear analyzer and a quarter wave retarder.
  151. 151
    The head mounted display system of any of the claims above, further comprising single polarizer between the optics and the at least one waveguide and between the light source and the optics.
  152. 152
    The head mounted display system of any of the claims above, wherein said light dump comprises absorbing material.
  153. 153
    The head mounted display system of any of the claims above, wherein said light dump comprises absorbing material surrounding filters of a filter array.
  154. 154
    The head mounted display system of any of the claims above, said light source is disposed laterally with respect to said at least one waveguide such that light from said light source is directed into said optics without passing through said at least one waveguide.
  155. 155
    The head mounted display system of any of the claims above, wherein said light source is disposed on a transparent layer that extends laterally with respect to said at least one waveguide such that light from said light source is directed into said optics without passing through said at least one waveguide.
  156. 156
    The head mounted display system of any of the claims above, wherein said light source is disposed on a transparent layer that is closer to a side of said at least one waveguide closer to said environment in front of said user than a side of said at least one waveguide closer to said user’s eye, said transparent layer extending laterally with respect to said at least one waveguide such that light from said light source is directed into said optics without passing through said at least one waveguide.
  157. 157
    The head mounted display system of any of the claims above, wherein said light source is disposed on a transparent layer that is closer to a side of said at least one waveguide closer to said user’s eye than a side of said at least one waveguide closer to said environment in front of said user, said transparent layer extending laterally with respect to said at least one waveguide such that light from said light source is directed into said optics without passing through said at least one waveguide.
  158. 158
    The head mounted display system of any of the claims above, wherein transparent layer comprises a cover glass.
  159. 159
    The head mounted display system of any of the claims above, further comprises a plurality of color filters laterally displaced with respect to each other, said color filters aligned laterally with respect to a plurality of in-coupling optical elements that are laterally displaced with respect to each other such that light passing through respective color filters is incident on respective in-coupling optical elements.
  160. 160
    The head mounted display system of any of the claims above, the plurality of color filters comprising a color filter array.
  161. 161
    The head mounted display system of any of the claims above, further comprising a polarizer disposed in an optical path between said spatial light modulator and said optics.
  162. 162
    The head mounted display system of any of the claims above, further comprising an analyzer disposed in an optical path between said spatial light modulator and said optics.
  163. 163
    The head mounted display system of any of the claims above, further comprising a compensator disposed in an optical path between said spatial light modulator and said optics.
  164. 164
    The head mounted display system of any of the claims above, further comprising a retarder disposed in an optical path between said spatial light modulator and said optics.
  165. 165
    The head mounted display system of any of the claims above, further comprising a quarter wave retarder disposed in an optical path between said spatial light modulator and said optics.
  166. 166
    The head mounted display system of any of the claims above, further comprising a first circular polarizer between said at least one waveguide and said optics having optical power.
  167. 167
    The head mounted display system of Claim 166, wherein said first circular polarizer is between said light source and said optics having optical power.
  168. 168
    The head mounted display system of any of the claims above, further comprising a second circular polarizer between said optics having optical power and said spatial light modulator.
  169. 169
    The head mounted display system of Claim 168, further comprising a retarder between said second circular polarizer and said spatial light modulator.
  170. 170
    The head mounted display system of Claim 168 or 169, further comprising a third circular polarizer between said second circular polarizer and said spatial light modulator.
  171. 171
    The head mounted display system of Claim 170, further comprising a retarder between said second and third circular polarizers.
  172. 172
    The head mounted display system of any of the claims above, further comprising a compensator between said optics having optical power and said spatial light modulator.
  173. 173
    The head mounted display system of any of Claims 168 to 171, further comprising a compensator between said second circular polarizer and said spatial light modulator.
  174. 174
    The head mounted display system of any of Claims 170 to 171, further comprising a compensator between said third circular polarizer and said spatial light modulator.
  175. 175
    The head mounted display system of any of the claims above, further comprising a cover glass between said optics having optical power and said spatial light modulator.
  176. 176
    The head mounted display system of any of Claims 168 to 174, further comprising a cover glass between said second circular polarizer and said spatial light modulator.
  177. 177
    The head mounted display system of any of Claims 170 to 174, further comprising a cover glass between said third circular polarizer and said spatial light modulator.
  178. 178
    The head mounted display system of any of Claims 172 to 174, further comprising a cover glass between said compensator and said spatial light modulator.
  179. 179
    The head mounted display system of any of the claims above, further comprising at least one optical surface that is tilted with respect to said at least one waveguide to redirect light reflected from said optical surface.
  180. 180
    The head mounted display system of any of the claims above, further comprising at least one optical surface that is tilted with respect to said spatial light modulator to redirect light reflected from said optical surface.
  181. 181
    The head mounted display system of any of the claims above, further comprising at least one optical surface that is tilted with respect to at least one polarizer or retarder to redirect light reflected from said optical surface.
  182. 182
    The head mounted display system of any of the claims above, further comprising at least one optical surface having a normal that is tilted with respect to an optical axis of said optics having optical power to redirect light reflected from said optical surface.
  183. 183
    The head mounted display system of any of Claims 179 to 182, wherein said at least one optical surface that is tilted redirects said reflected light away from an incoupling optical element of said at least one waveguide.
  184. 184
    The head mounted display system of any of Claims 179 to 183, wherein said at least one optical surface that is tilted redirects said reflected light such that less of said reflected light is coupled into said at least one waveguide and guided therein.
  185. 185
    The head mounted display system of any of Claims 179 to 184, wherein said at least one optical surface that is tilted redirects said reflected light such less of said reflected light is directed to the user’s eye.
  186. 186
    The head mounted display system of any of Claims 179 to 185, wherein said at least one optical surface that is tilted redirects at least some said reflected light to said light source.
  187. 187
    The head mounted display system of any of Claims 179 to 186, further comprising a light dump to receive at least some of said reflected light from said at least one optical surface that is tilted.
  188. 188
    The head mounted display system of any of any of Claims 179 to 187, wherein said at least one optical surface that is tilted is on said cover glass.
  189. 189
    The head mounted display system of any of Claims 179 to 188, wherein said at least one optical surface that is tilted is on one or more of the following:at least one retarder, at least one polarizer, or at least one compensator.
  190. 190
    The head mounted display system of any of the claims above, wherein said cover glass is wedge-shaped.
  191. 191
    The head mounted display system of any of the claims above, wherein at least one retarder, at least one polarizer, or at least one compensator is wedge-shaped.
  192. 192
    The head mounted display system of any of the claims above, further comprising a polarization rotator disposed with respect to said light source to rotate the polarization of light emitted therefrom.
  193. 193
    The head mounted display system of Claims 166 or 167, further comprising a polarization rotator disposed between said light source and said first circular polarizer.
  194. 194
    The head mounted display system of any of the claims above, wherein said at least one in-coupling optical element comprises first and second in-coupling optical elements, said head mounted display system further comprising first and second color filters associated with said first and second in-coupling optical elements, respectively.
  195. 195
    The head mounted display system of Claim 194, wherein the first color filter transmits more light of a first color than the second color filter and the second color filter transmits more light of the second color than the first color.
  196. 196
    The head mounted display system of Claims 194 or 195, wherein said at least one waveguide comprises first and second waveguides, and wherein the first in-coupling optical element couples more light of a first color than the second color filter into said first waveguide and the second in-coupling optical element couples more light of the second color than the first color into said second waveguide.
  197. 197
    The head mounted display system of any of Claims 194-196, wherein the first and second color filters are laterally aligned with the respective first and second in-coupling optical elements.
  198. 198
    The head mounted display system of any of Claims 194-197, further comprising first and second light sources, wherein the first and second light sources are disposed to direct light through the first and second color filters respectively, to the first and second in-coupling optical elements, respectively.
  199. 199
    The head mounted display system of any of Claims 194-197, further comprising first and second light sources, wherein the first and second color filters are disposed in first and second optical paths between the first and second light sources and the first and second in-coupling optical elements, respectively.
  200. 200
    The head mounted display system of Claims 198 or 199, wherein the first and second light sources comprise first and second color light sources configured to emit first and second colors, respectively.
  201. 201
    The head mounted display system of Claims 198 or 199, wherein the first and second light sources comprise broad band color light sources configured to emit both said first and second colors. -
Independent claims201