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外差检测:相位前沿对准、光斑尺寸和探测器均匀性。

Heterodyne detection: phase front alignment, beam spot size, and detector uniformity.

作者信息

Cohen S C

出版信息

Appl Opt. 1975 Aug 1;14(8):1953-9. doi: 10.1364/AO.14.001953.

Abstract

We consider the effects of signal and local oscillator phase front misalignment, beam spot sizes, and electric field distributions on heterodyne detection. The signal and local oscillator fields that we consider are various combinations of Airy, Gaussian, and uniform distributions. We show that the values of the beam radii that maximize the heterodyne SNR are sensitive to phase front misalignment and that the degradation with misalignment angle is somewhat less severe for Airy received signals than for uniform. We also prove that for small optical spot sizes and perfect alignment, the optimal ratio of local oscillator Gaussian l/e field radius to signal Airy F number is approximately 0.7lambda. We next consider the effects of nonuniform detector quantum efficiency. Simple examples show that quantum efficiencies averaged over the detector surface give only crude estimates of the sensitivity of a heterodyne system. For accurate estimates full account must be made of the electric field parameters and the detector re ponse at each point on its photosurface.

摘要

我们考虑了信号与本振相位前沿失准、光斑尺寸以及电场分布对外差检测的影响。我们所考虑的信号场和本振场是艾里分布、高斯分布和均匀分布的各种组合。我们表明,使外差信噪比最大化的光束半径值对相位前沿失准很敏感,并且对于艾里接收信号,随着失准角度的增大,性能下降程度比对均匀信号的情况稍轻。我们还证明,对于小光斑尺寸和完美对准的情况,本振高斯l/e场半径与信号艾里F数的最佳比值约为0.7λ。接下来,我们考虑探测器量子效率不均匀的影响。简单示例表明,探测器表面上平均的量子效率仅能粗略估计外差系统的灵敏度。为了得到准确估计,必须充分考虑电场参数以及探测器光表面上各点的响应。

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