2014
DOI: 10.1016/j.optcom.2013.11.006
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Polarization-time-block-code in IM/DD PolMux-OFDM transmission system

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“…In this case, the Stokes vector of the output light passing through the wire grid polarizer is the matrix multiplication of the Mueller matrix of the wire grid polarizer and the Stokes vector of the incident light. So, the Mueller matrix M of a perfect wire grid polarizer is [ 27 , 31 , 32 ]: where is the polarization azimuth angle. Suppose the degree of polarization of the outgoing light passing through the collimator is P , then the partially polarized light can be decomposed into: …”
Section: Error Source Analysis Of Laboratory Calibration Of the Polar...mentioning
confidence: 99%
“…In this case, the Stokes vector of the output light passing through the wire grid polarizer is the matrix multiplication of the Mueller matrix of the wire grid polarizer and the Stokes vector of the incident light. So, the Mueller matrix M of a perfect wire grid polarizer is [ 27 , 31 , 32 ]: where is the polarization azimuth angle. Suppose the degree of polarization of the outgoing light passing through the collimator is P , then the partially polarized light can be decomposed into: …”
Section: Error Source Analysis Of Laboratory Calibration Of the Polar...mentioning
confidence: 99%