EP1639331A2

Measurements of optical inhomogeneity and other properties in substances using propagation modes of light

Abstract

This record has no abstract on file.

Term

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Projected expiry passed 4 June 2024, 2.3 years ago.

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161 claims: 11 independent, 150 dependent

  1. 1
    Claims of equivalent WO 2005001522 A2 Claims What is claimed is what is described in the text and illustrated in the drawings, including:1. A method for optically measuring a sample, comprising: directing one beam of guided light in a first propagation mode to a sample;directing a first portion of the guided light in the first propagation mode at a location near the sample away from the sample before the first portion reaches the sample while allowing a second portion in the first propagation mode to reach the sample;controlling a reflection of the second portion from the sample to be in a second propagation mode different from the first propagation mode to produce a reflected second portion;and directing both the reflected first portion in the first propagation mode and the reflected second portion in the second propagation mode through a common waveguide into a detection module to extract information from the reflected second portion on the sample.
  2. 25
    ' A device for optically measuring a sample, comprising:a waveguide to receive and guide an input beam in a first propagation mode;a probe head coupled to the waveguide to receive the input beam and to reflect a first portion of the input beam back to the waveguide in the first propagation mode and direct a second portion of the input beam to a sample, the probe head collecting reflection of the second portion from the sample and exporting to the waveguide the reflection as a reflected second portion in a second propagation mode different from the first propagation mode;and a detection module to receive the reflected first portion and the reflected second portion in the waveguide and to extract information of the sample carried by the reflected second portion.
  3. 56
    A method for optically measuring a sample, comprising:directing light in a first propagation mode to a vicinity of a sample under measurement;directing a first portion of the light in the first propagation mode to propagate away from the sample at the vicinity of the sample without reaching ' the sample;directing a second portion of the light in the first propagation mode to the sample to cause reflection at the sample;controlling reflected light from the sample to be in a second propagation mode that is independent from the first propagation mode to co-propagate with the first portion along a common optical path;and using the first portion in the first propagation mode and the reflected light in the second propagation mode to obtain information of the sample.
  4. 62
    An apparatus for optically measuring a sample, comprising:a) a light source;b) a waveguide supporting at least first and second independent propagation modes and guiding the light radiation from the light source in the first propagation mode to the vicinity of a sample under examination;c) a probe head that terminates the waveguide in the vicinity of the sample and reverses the propagation direction of a portion of the first propagation mode in the waveguide while transmitting the remainder of the light radiation to the sample, the probe head operable to convert reflected light from the sample into the second propagation mode;d) a differential delay modulator that transmits the light in both the first and the second propagation modes from the probe head and the waveguide and varies the relative optical path length between the first and the second propagation modes;e) a mode combiner to receive light from the differential delay modulator and operable to superpose the first and the second propagation modes by converting a portion of each mode to a pair of new modes;f) at least one photodetector to receive light in at least one of the two new modes;and g) an electronic controller in communication with the photodetector and operable to extract information of the sample from the output of the photodetector.
  5. 66
    An apparatus for optically measuring a sample, comprising:a first waveguide capable of maintaining at least one propagation mode;a light source that emits radiation to excite the propagation mode in the first waveguide;a light director that terminates the first waveguide with its first port and passes the light mode entering the first port, at least in part, through a second port and passes the light modes entering the second port, at least in part, through a third port;a second waveguide that supports at least two independent propagation modes and having a first end coupled to the second port and a second end;a probe head coupled to the second end of the second waveguide and operable to reverse the propagation direction of the light in part back to the second waveguide and to transmit the remainder to the sample, the probe head further operable to transform the collected light from the sample reflection to an orthogonal mode supported by the second waveguide and direct light in the orthogonal mode into the second waveguide;a third waveguide supporting at least two independent propagation modes and being connected to the third port of the light director to receive light therefrom;a differential delay modulator that connects to the third waveguide to receive light from the second waveguide and imposes a variable phase delay and a variable path length on one mode in reference to the other;a fourth waveguide supporting at least two independent modes and coupled to the differential delay modulator to receive light therefrom;and a detection subsystem positioned to receive light from the fourth waveguide and to superpose the two propagation modes from the fourth waveguide to form two new modes, mutually orthogonal, the detection subsystem comprising two photo-detectors respectively receiving light in the new modes .
  6. 84
    A device, comprising:an optical waveguide to guide an optical radiation in a first optical mode;an optical probe head coupled to the optical waveguide to receive the optical radiation, the optical probe head operable to (1) redirect a portion of the optical radiation back to the optical waveguide while transmitting the remaining radiation to a sample, (2) receive and direct the reflected or backscattered radiation from the sample into the waveguide, and (3) control the reflected or the backscattered light from the sample to be in a second optical mode different from the first optical mode;and an optical detection module to receive the radiation redirected by the probe head through the waveguide and to convert optical radiation in the first and second optical modes, at least in part, into a common optical mode.
  7. 88
    A device for optically measuring a sample, comprising:an input waveguide, which supports first and second different propagation modes, to receive and guide an input beam in the first propagation mode;an output waveguide, which supports first and second different propagation modes;a probe head coupled to the input waveguide to receive the input beam and to the output waveguide to export light, the probe head operable to direct a first portion of the input beam in the first propagation mode into the output waveguide and direct a second portion of the input beam to a sample, the probe head collecting reflection of the second portion from the sample and exporting to the output waveguide the reflection as a reflected second portion in the second propagation mode;and a detection module to receive the reflected first portion and the reflected second portion in the output waveguide and to extract information of the sample carried by the reflected second portion.
  8. 91
    A method, comprising:guiding optical radiation in both a first propagation mode and a second, different propagation mode through an optical waveguide towards a sample;directing radiation in the first propagation mode away from the sample without reaching the sample;directing radiation in the second propagation mode to interact with the sample to produce returned radiation from the interaction;coupling both the returned radiation in the second propagation mode and the radiation in the first propagation mode into the optical waveguide away from the sample;and using the returned radiation in the second propagation mode and the radiation in the first propagation mode from the optical waveguide to extract information of the sample.
  9. 113
    A device for optically measuring a sample, comprising:a waveguide, which supports a first propagation mode and a second, different propagation mode, to receive and guide an input beam in both the first and the second propagation modes;a probe head coupled to the waveguide to receive the input beam and to reflect a first portion of the input beam in the first propagation mode back to the waveguide in the first propagation mode and direct a second portion of the input beam in the second propagation mode to a sample, the probe head collecting reflection of the second portion from the sample and exporting to the waveguide the reflection as a reflected second portion in the second propagation mode;and a detection module to receive the reflected first portion and the reflected second portion in the waveguide and to extract information of the sample carried by the reflected second portion.
  10. 142
    A device for optically measuring a sample, comprising:an input waveguide, which supports a first propagation mode and a second, different propagation mode, to receive and guide an input beam in both the first and the second propagation modes;an output waveguide, which supports the first and the second propagation modes;a probe head coupled to the input waveguide to receive the input beam and to the output waveguide, the probe head operable to direct a first portion of the input beam in the first propagation mode into the output waveguide in the first propagation mode and direct a second portion of the input beam in the second propagation mode to a sample, the probe head collecting reflection of the second portion from the sample and exporting to the output waveguide the reflection as a reflected second portion in the second propagation mode;and a detection module to receive the reflected first portion and the reflected second portion in the output waveguide and to extract information of the sample carried by the reflected, second portion.
  11. 155
    A device for optically measuring a sample, comprising:a waveguide, which supports at least an input propagation mode of light, to receive and guide an input beam in the input propagation mode;a probe head coupled to the waveguide to receive the input beam and to reflect a first portion of the input beam back to the waveguide in the input propagation mode and direct a second portion of the input beam in the input propagation mode to a sample, the probe head collecting reflection of the second portion from the sample and exporting to the waveguide the reflection as a reflected second portion in the input propagation mode;and a detection module to receive the reflected first portion and the reflected second portion in the input propagation mode from the waveguide and to extract information of the sample carried by the reflected second portion.