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Short wave infrared multi-conjugate liquid crystal tunable filter

  • US 8,400,574 B2
  • Filed: 04/14/2011
  • Issued: 03/19/2013
  • Est. Priority Date: 04/16/2010
  • Status: Active Grant
First Claim
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1. A spectral imaging filter, comprising:

  • at least two spectral filter stages coupled along an optical signal path, wherein each of the at least filter stages has a periodic transmission characteristic with bandpass peaks separated by free spectral bandpass gaps;

    wherein each of the filter stages comprises a set of birefringent retarders and at least one polarizer, and the birefringent retarders in the set of at least one of said stages is characterized by retardation that is different from a retardation of the birefringent retarders in at least one other of the stages, such that said one of the at least two filter stages has a greater free spectral range than the other of the two filter stages, between the bandpass peaks of said one of the filter stages, and said other of the two filter stages has narrower bandpass peaks than said one of the two filter stages;

    wherein the bandpass peaks of said at least two filter stages overlap in an operative state of the filter, whereby a transmission characteristic of the spectral imaging filter as a whole is characterized by said greater free spectral range and said narrower bandpass peaks; and

    wherein said set of birefringent retarders of each filter stage are rotationally distributed leading to an output polarizer, whereby the output polarizer for leading stages functions as an input polarizer for following stages, wherein a number of said stages, and a number and respective thickness of retarders within the stages, are chosen to provide a free spectral range (FSR) from about 850-1700 nm.

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