EP1570232A1

Apparatus and methods for detecting overlay errors using scatterometry

Abstract

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Projected expiry passed 5 December 2023, 2.8 years ago.

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109 claims: 27 independent, 82 dependent

  1. 1
    Claims of equivalent WO 2004053426 A1 WHAT IS CLAIMED IS:1. A method for determining overlay between a plurality of first stmctures in a first layer of a sample and a plurality of second stmctures in a second layer of the sample, the method comprising: providing targets A, B, C and D that each include a portion of the first and second stmctures, wherein the target A is designed to have an offset Xa between its first and second stmctures portions, wherein the target B is designed to have an offset Xb between its first and second stmctures portions, wherein the target C is designed to have an offset Xc between its first and second stmctures portions, wherein the target D is designed to have an offset Xd between its first and second stmctures portions, wherein each of the offsets Xa, Xb, Xc and Xd is different from zero, Xa is an opposite sign and differ from Xb, and Xc is an opposite sign and differs from Xd;illuminating the targets A, B, C and D with electromagnetic radiation to obtain spectra S A , S B , S C , and S D from targets A, B, C, and D, respectively;and determining any overlay error between the first stmctures and the second stmctures using a linear approximation based on the obtained spectra S A , S B , SC, and S D .
  2. 4
    The method of any of claims 1-3, wherein each of the targets A, B, C, and D comprises a grating stmcture Gal having periodic stmctures with a period Tal disposed at least partially within the first layer and a grating stmcture Ga2 having periodic stmctures with a period Ta2 disposed at least partially within the second layer, wherein the first period Tal and the second period Ta2 are substantially identical, and wherein the offsets Xa, Xb, Xc, and Xd are each produced by offsetting the stmctures with the period Tal of the grating stmcture Gal with respect to the stmctures with the period Ta2 of the grating stmcture Ga2 by the sum of a first distance F and a second distance ft), wherein the second distance ft) has a smaller absolute value than the first distance F.
  3. 5
    The method any of claims 1-3, wherein the targets A, B, C and D are disposed along a substantially straight line.
  4. 7
    The method of any of claims 1-3, wherein the targets A, B, C and D are disposed in a two dimensional configuration.
  5. 9
    The method of any of claims 1-8, the method further comprising:producing an additional target E, the additional target E including a portion of the first and second stmctures with an offset Y there between;illuminating the additional target E with electromagnetic radiation to obtain spectra S E ;and wherein the determining any overlay error is further based on the spectmm S E -
  6. 10
    The method of any of claims 1-9, wherein obtaining the spectra S A , S B , S C , and S D comprises acquiring radiation from the targets A, B, C, and D using an optical apparatus.
  7. 40
    The method of any of claims 1-10, wherein at least one of the spectra S A , S B , S C , and S D comprises electromagnetic radiation that is unpolarized or selectively polarized or selectively analyzed.
  8. 41
    The method of any of claims 1-10, wherein at least one of the spectra S A , S B , S C , and S D comprises electromagnetic radiation that is unpolarized reflected light, polarized light with the electric field substantially parallel to a symmetry axis of at least one set of stmctures of at least one of the targets A, B, C or D, polarized light with the electric field substantially perpendicular to a symmetry axis of at least one set of stmctures of at least one of the targets A, B, C or D, polarized light with the electric field at an angle with respect to a symmetry axis of at least one set of stmctures of at least one of the targets A, B, C or D, right-hand circularly polarized radiation, or left-hand circularly polarized radiation.
  9. 43
    The method of any of claims 1-42, wherein the illuminating the targets A, B, C and D with electromagnetic radiation takes place substantially at different times such that the corresponding spectra S A , S B , S C , and S D are obtained at substantially different times.
  10. 44
    The method of any of claims 1-42, wherein the illuminating the targets A, B, C and D with electromagnetic radiation takes place substantially simultaneously such that the corresponding spectra SA, SB, S C , and SD are produced substantially simultaneously.
  11. 45
    The method of any of claims 1-42, wherein the illuminating the targets A, B, C and D with electromagnetic radiation takes place substantially simultaneously for at least two of the targets A, B, C and D.
  12. 49
    The method of any of claims 1-10, wherein obtaining the spectra S A , S B , S C , and S D comprises acquiring an image from the targets A, B, C, and D using an imaging apparatus having a wavelength filter, and wherein the spectra S A , S B , S C , and S D are an averaged or summed one or more intensity value(s) of one or more pixels of the corresponding target image, the method further comprising selecting a wavelength using the wavelength filter such that contrast between the S A , S B , S C , and S D is maximized.
  13. 51
    The method of any of claims 1 -9, wherein obtaining the spectra S A , S B , S C , and S D comprises acquiring radiation from the targets A, B, C, and D using an optical apparatus, wherein the radiation is acquired at simultaneous, multiple angles of illumination.
  14. 53
    The method of any of claims 1-52, wherein at least one of the targets A, B, C, and D includes an imaging overlay metrology type target, and the method further comprises measuring a second overlay error on the imaging overlay metrology type target.
  15. 56
    57. A system for determining overlay between a plurality of first stmctures in a first layer of a sample and a plurality of second stmctures in a second layer of the sample, comprising:a scatterometry module for illuminating the targets A, B, C and D with electromagnetic radiation to obtain spectra S A , SB, SC, and S D from targets A, B, C, and D, respectively ;and a processor operable for determining any overlay error between the first stmctures and the second stmctures using a linear approximation based on the obtained spectra SA, SB, SC, and SD, wherein targets A, B, C and D each include a portion of the first and second stmctures, wherein the target A is designed to have an offset Xa between its first and second stmctures portions, wherein the target B is designed to have an offset Xb between its first and second stmctures portions, wherein the target C is designed to have an offset Xc between its first and second stmctures portions, wherein the target D is designed to have an offset Xd between its first and second stmctures portions, and wherein each of the offsets Xa, Xb, Xc and Xd is different from zero, Xa is an opposite sign and differ from Xb, and Xc is an opposite sign and differs from Xd.
  16. 59
    60. The system of any claims 57-59, wherein the targets A, B, C and D are disposed along a substantially straight line.
  17. 61
    62. The system of any claims 57-59, wherein the targets A, B, C and D are disposed in a two dimensional configuration.
  18. 63
    64. The system of any claims 57-63, wherein the processor is further operable for:producing an additional target E, the additional target E including a portion of the first and second stmctures with an offset Y there between;illuminating the additional target E with electromagnetic radiation to obtain spectra S E ;and wherein the determining any overlay error is further based on the spectrum S E -
  19. 64
    65. The system of any claims 57-64, wherein the scatterometry module is an optical apparatus.
  20. 94
    95. The system of any claims 57-65, wherein at least one of the spectra S A , S B , S C , and S D comprises electromagnetic radiation that is unpolarized or selectively polarized or selectively analyzed.
  21. 95
    96. The system of any claims 57-65, wherein at least one of the spectra S A , S B , S C , and S D comprises electromagnetic radiation that is unpolarized reflected light, polarized light with the electric field substantially parallel to a symmetry axis of at least one set of stmctures of at least one of the targets A, B, C or D, polarized light with the electric field substantially perpendicular to a symmetry axis of at least one set of stmctures of at least one of the targets A, B, C or D, polarized light with the electric field at an angle with respect to a symmetry axis of at least one set of stmctures of at least one of the targets A, B, C or D, right-hand circularly polarized radiation, or left-hand circularly polarized radiation.
  22. 97
    98. The system of any claims 57-98, wherein the illuminating the targets A, B, C and D with electromagnetic radiation takes place substantially at different times such that the corresponding spectra S A , S B , S C , and So are obtained at substantially different times.
  23. 98
    99. The system of any claims 57-98, wherein the illuminating the targets A, B, C and D with electromagnetic radiation takes place substantially simultaneously such that the corresponding spectra S A , S B , S C , and S D are produced substantially simultaneously.
  24. 99
    100. The system of any claims 57-98, wherein the illuminating the targets A, B, C and D with electromagnetic radiation takes place substantially simultaneously for at least two of the targets A, B, C and D.
  25. 103
    104. The system of any claims 57-65, wherein obtaining the spectra S A , S B , Sc, and S D comprises acquiring an image from the targets A, B, C, and D using an imaging apparatus having a wavelength filter, and wherein the spectra S A , S B , S C , and S D are an averaged or summed one or more intensity value(s) of one or more pixels of the corresponding target image, the method further comprising selecting a wavelength using the wavelength filter such that contrast between the S A , S B , S C , and S D is maximized.
  26. 105
    106. The system of any claims 57-64, wherein the scatterometry module is an optical apparatus, wherein the radiation is acquired at simultaneous, multiple angles of illumination.
  27. 107
    108. The system of any claims 57-107, wherein at least one of the targets A, B, C, and D includes an imaging overlay metrology type target, and the method further comprises measuring a second overlay error on the imaging overlay metrology type target.
Independent claims27