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Analysis of shot noise in the detection of ultrashort optical pulse trains

机译:超短光脉冲串检测中的散粒噪声分析

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摘要

We present a frequency domain model of shot noise in the photodetection of ultrashort optical pulse trains using a time-varying analysis. Shot-noise-limited photocurrent power spectral densities, signal-to-noise expressions, and shot-noise spectral correlations are derived that explicitly include the finite response of the photodetector. It is shown that the strength of the spectral correlations in the shot noise depends on the optical pulsewidth, and that these correlations can create orders-of-magnitude imbalance between the shot-noise-limited amplitude and phase noise of photonically generated microwave carriers. It is also shown that only by accounting for spectral correlations can shot noise be equated with the fundamental quantum limit in the detection of optical pulse-to-pulse timing jitter.
机译:我们使用时变分析在超短光脉冲序列的光电检测中提出了散粒噪声的频域模型。导出了散粒噪声限制的光电流功率谱密度,信噪比表达式和散粒噪声谱相关性,这些显式包括光电探测器的有限响应。结果表明,散粒噪声中频谱相关的强度取决于光脉冲宽度,并且这些相关可以在散粒噪声限制的振幅和光子产生的微波载波的相位噪声之间造成量级不平衡。还表明,只有在考虑光谱相关性的情况下,才能将散粒噪声等同于基本的量子极限,以检测光脉冲到脉冲的定时抖动。

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