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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Quantum mechanically formulated fluctuationcharacterization method using symmetric and asymmetric interferometers
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Quantum mechanically formulated fluctuationcharacterization method using symmetric and asymmetric interferometers

机译:使用对称和非对称干涉仪的量子力学公式化的波动表征方法

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摘要

A fluctuation-characterization method using an interferometer is ordinarily classically formulated by considering frequency fluctuations. However, it is preferable to treat it quantum mechanically because the method measures q-number quadrature fluctuations at the same time. We formulated an interferometric fluctuation-characterization method by treating quadrature fluctuations as q-number variables and frequency fluctuations as a c-number stochastic variable, and we gave the power spectral density of the fluctuations for pulse light. This method measures fluctuations that are calibrated with shot noise level, and it makes it possible to estimate the fluctuation angle in phase space, which is the quantity that determines transmission characteristics in optical communications. Fluctuations in a laser diode were characterized as an example of measurement.
机译:通常,通过考虑频率波动来典型地制定使用干涉仪的波动表征方法。但是,最好以机械方式对其进行量子处理,因为该方法可同时测量q数正交波动。我们通过将正交波动视为q数变量并将频率波动视为c数随机变量,制定了干涉波动特征化方法,并给出了脉冲光波动的功率谱密度。该方法测量用散粒噪声水平校准的波动,并且可以估计相位空间中的波动角,该相位角是确定光通信中传输特性的量。激光二极管的波动是测量的一个例子。

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