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Saturation effects in heterodyne detection with Geiger-mode InGaAs avalanche photodiode detector arrays

机译:盖革模式InGaAs雪崩光电二极管探测器阵列在外差探测中的饱和效应

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摘要

We report, to the best of our knowledge, the first demonstration of heterodyne detection of a glint target using an InGaAs avalanche photodiode detector (APD) array in the Geiger mode. Due to the finite number of pixels, all such photon-counting arrays necessarily suffer from saturation effects. At large photon fluxes, saturation of the APD degrades the Doppler frequency resolution and the signal-to-noise ratio (SNR). We derive analytical expressions for the Doppler resolution and SNR, taking saturation effects into account. The optimal local oscillator power can be obtained numerically from the SNR expression.
机译:据我们所知,我们首次在Geiger模式下使用InGaAs雪崩光电二极管检测器(APD)阵列进行了外差检测闪光目标的演示。由于像素的数量有限,所有这样的光子计数阵列必然遭受饱和效应。在大光子通量下,APD的饱和会降低多普勒频率分辨率和信噪比(SNR)。考虑到饱和效应,我们推导了多普勒分辨率和SNR的解析表达式。最佳本地振荡器功率可以从SNR表达式中获得。

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