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用于超低噪声光子微波产生的对幅度-相位转换噪声免疫的光探测系统。

Photodetection system immune to amplitude-to-phase conversion noise for ultralow noise photonic microwave generation.

出版信息

Opt Lett. 2018 Oct 15;43(20):5122-5125. doi: 10.1364/OL.43.005122.

Abstract

Microwave signals generated by photodetection of the pulse train of an optical frequency comb locked to an ultrastable laser have ultrahigh spectral purity and frequency stability. The amplitude-to-phase noise conversion (APC) that occurs in the photodetection, however, degrades the phase noise of the generated microwave signal over the range from tens of hertz to several kilohertz. Here we demonstrate active APC compensation by precisely tuning the bias voltage applied to a photodetector using the APC coefficient measured by comparing with a reference photodetector. In this scheme, the APC was dramatically reduced and a long-term steady rejection of the laser relative intensity noise of more than 60 dB was achieved.

摘要

通过探测光频梳的脉冲序列实现与超稳激光的锁定,并将其转换为微波信号,这种方法产生的微波信号具有超高的光谱纯度和频率稳定性。然而,在探测过程中会发生幅度到相位噪声转换(APC),从而导致生成的微波信号在几十赫兹到几千赫兹的范围内的相位噪声恶化。在本文中,我们通过使用与参考光电探测器进行比较测量得到的 APC 系数,来精确地调整光电探测器的偏置电压,从而实现了主动 APC 补偿。在这种方案中,APC 得到了极大的降低,并实现了对激光相对强度噪声的长期稳定抑制,抑制超过 60dB。

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