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Noise equalization in Stokes parameter images obtained by use of variable-retardance polarimeters

机译:使用可变延迟旋光仪获得的斯托克斯参数图像中的噪声均衡

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摘要

An imaging variable retardance polarimeter was developed and tested by Tyo and Turner [Proc. SPIE 3753, 214 (1999)]. The signal-to-noise ratio (SNR) in the reconstructed polarization images obtained with this system varied for the four Stokes parameters. The difference in SNR is determined to be due to differences in the Euclidean lengths of the rows of the synthesis matrix used to reconstruct the Stokes parameters from the measured intensity data. I equalize (and minimize) the lengths of the rows of this matrix by minimizing the condition number of the synthesis matrix, thereby maximizing the relative importance of each of the polarimeter measurements. The performance of the optimized system is demonstrated with simulated data, and the SNR is shown to increase from a worst case of -3.1 dB for the original settings to a worst case of +5.0 dB for the optimized system.
机译:成像可变延迟旋光仪由Tyo和Turner研制并测试。 SPIE 3753,214(1999)]。使用此系统获得的重建偏振图像中的信噪比(SNR)对于四个Stokes参数有所不同。确定SNR的差异是由于用于从测得的强度数据重建斯托克斯参数的合成矩阵的行的欧几里德长度的差异。我通过最小化合成矩阵的条件数来均衡(并最小化)该矩阵的行的长度,从而最大化每个偏振计测量的相对重要性。通过仿真数据演示了优化系统的性能,并且表明SNR从原始设置的最坏情况-3.1 dB增加到优化系统的最坏情况+5.0 dB。

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