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在3×3耦合器干涉测量系统上稳定抑制激光相对强度噪声。

Stably suppressing laser relative intensity noise on a 3 × 3 coupler interferometric system.

作者信息

Liu Xiaopeng, Wu Xuqiang, Luo Jiatong, Zhou Wen, Zhang Jihao, Xia Qiliang, Wang Tengfei, Shi Jinhui, Lin Zhiwei, Liu Yangzhou, Yu Benli

出版信息

Opt Lett. 2024 Jul 15;49(14):3950-3953. doi: 10.1364/OL.529010.

Abstract

A 3 × 3 coupler multiphase demodulation scheme is proposed to eliminate the impact of working point drifting and the laser relative intensity noise (RIN) on a 3 × 3 coupler interferometric system. An ellipse-fitting algorithm (EFA) is applied to fit the two interference signals of the 3 × 3 coupler in order, then the ATAN algorithm is applied to obtain three noise-containing signals with specific trigonometric relationships. By averaging the three signals, the demodulated phase noise induced from RIN can be effectively eliminated. The experimental results show that compared with the asymmetric demodulation scheme without intensity noise control, the noise floor of the proposed scheme decreases from 4.5 to 1 µrad/√Hz at 1 kHz and 2.7 to 0.8 µrad/√Hz at 3 kHz. At high frequencies, the average noise floor level is reduced from 10 to 0.9 µrad/√Hz, a reduction of about 21 dB. Furthermore, the variation range of the average noise floor is reduced from 5.4 to 0.17 µrad /√Hz within 100 s.

摘要

提出了一种3×3耦合器多相解调方案,以消除工作点漂移和激光相对强度噪声(RIN)对3×3耦合器干涉系统的影响。应用椭圆拟合算法(EFA)依次拟合3×3耦合器的两个干涉信号,然后应用ATAN算法获得具有特定三角函数关系的三个含噪信号。通过对这三个信号进行平均,可以有效消除由RIN引起的解调相位噪声。实验结果表明,与无强度噪声控制的非对称解调方案相比,该方案的本底噪声在1kHz时从4.5降至1μrad/√Hz,在3kHz时从2.7降至0.8μrad/√Hz。在高频时,平均本底噪声水平从10降至0.9μrad/√Hz,降低了约21dB。此外,平均本底噪声的变化范围在100s内从5.4降至0.17μrad /√Hz。

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