Cross-Correlation Measurements of Phase Noise Induced by Relative Intensity Noise in Photodetectors

Q Physics and Astronomy Journal of the Optical Society of Korea Pub Date : 2016-12-25 DOI:10.3807/JOSK.2016.20.6.694
Zhewei Cao, Chun Yang, Zhenghua Zhou
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引用次数: 1

Abstract

Up-converted phase noise, which is induced by the low-frequency relative intensity noise (RIN) of a laser through AM-PM conversion within a photodetector (PD), is first measured here by means of a cross-correlation method. Our proposed measurement system can isolate the RIN-induced phase noise from noise contributions of other components, such as amplifiers, modulators, and mixers. In particular, shot noise and thermal noise generated from the PD are also suppressed by this method, so that standalone characteristics of the RIN-induced phase noise can be obtained. Experimental results clearly show the quantitative relationship between the RIN-induced phase noise and the incident optical power of the PD. Our findings indicate that the least RIN-induced phase noise appeared at the saturation point of the PD, which is about -162 dBc/Hz at 10 kHz offset.
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光电探测器中相对强度噪声引起的相位噪声的互相关测量
上转换相位噪声是由激光的低频相对强度噪声(RIN)通过光电探测器(PD)内的AM-PM转换引起的,本文首先通过互相关方法测量了上转换相位噪声。我们提出的测量系统可以将rin诱导的相位噪声与其他组件(如放大器、调制器和混频器)的噪声隔离开来。特别地,该方法还抑制了PD产生的散粒噪声和热噪声,从而获得了rin诱导相位噪声的独立特性。实验结果清楚地显示了rin诱导的相位噪声与PD的入射光功率之间的定量关系。我们的研究结果表明,最小的rin诱导相位噪声出现在PD的饱和点,在10 kHz偏移时约为-162 dBc/Hz。
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2.3 months
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