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Phase Measurement of a Microwave Optical Modulation: Characterisation and Reduction of Amplitude-to-Phase Conversion in 1.5 μm High Bandwidth Photodiodes

机译:微波光调制器的相位测量:1.5μm高带宽光电二极管中幅相转换的表征和降低

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摘要

High accuracy and low noise measurement of the phase of a microwave signal requires that spurious contributions are adequately dealt with. In this paper we investigate the power-to-phase coupling in two commercial high bandwidth P-I-N, near-IR photodetectors. We observe that a sudden change of the optical power induces a transient of the phase of the 20 GHz signal, at different time scales. The temperature rise of the photodetector junction is likely to be involved in this dynamical behaviour. The value of the bias voltage applied to the photodetector appears to control the size of the phase transients, as well as the optical power for which the slope of the amplitude-to-phase coupling cancels. The most efficient way to reduce amplitude to phase couplings consists in implementing optical demodulation, instead of electrical demodulation, of the microwave signal.
机译:微波信号相位的高精度和低噪声测量需要充分处理杂散影响。在本文中,我们研究了两个商用高带宽P-I-N,近红外光电探测器中的功率-相位耦合。我们观察到,光功率的突然变化会在不同的时间尺度上引起20 GHz信号相位的瞬变。光电探测器结的温度升高很可能与这种动态行为有关。施加到光电检测器的偏置电压的值似乎可以控制相位瞬变的大小,以及可以抵消幅度-相位耦合的斜率的光功率。降低幅度到相位耦合的最有效方法是对微波信号实施光学解调而不是电解调。

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