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Excess noise reduction by optical technique in amplitude-sensitive heterodyne interferometer for small differential phase detection

机译:振幅敏感外差式干涉仪中用于微差相位检测的光学技术可大大降低噪声

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摘要

An amplitude-sensitive technique associated with a heterodyne interferometer for detecting small differential phase is reported. The excess noise with the amplitude-sensitive technique is reduced by optical subtraction instead of electronic subtraction. The differential phase introduced by the orthogonally polarized laser beams is converted to the amplitudes of two heterodyne interferometric signals, which presents amplitude and phase quadrature simultaneously. Thus the excess noise power and quantum noise power are both differential phase dependent. The advantages of differential and additive operations by optical technique and the real time differential phase determination without phase lock in are demonstrated experimentally. The theoretical signal-to-noise ratio (SNR) and minimum detectable differential phase are derived, which takes quantum noise and excess noise into consideration. The experimental results demonstrated the resolutions of differential phase detection closes to 10~(-6) rad/(Hz)~(1/2)(10~(-13) m/(Hz)~(1/2)) level over 100kHz bandwidth and at 10~(-8) rad/(Hz)~(1/2) (10~(-15) m/(Hz)~(1/2)) level over 125 MHz bandwidth, respectively, under 2.5 mW incident power.
机译:报道了一种与外差干涉仪相关的振幅敏感技术,用于检测微小的差分相位。通过光学减法而不是电子减法,可以减少振幅敏感技术产生的多余噪声。正交偏振激光束引入的差分相位被转换为两个外差干涉测量信号的幅度,这两个信号同时呈现幅度和相位正交。因此,多余的噪声功率和量子噪声功率都与差分相位有关。实验证明了利用光学技术进行微分和加法运算以及无需锁相的实时差分相位确定的优势。推导了理论信噪比(SNR)和最小可检测差分相位,其中考虑了量子噪声和过量噪声。实验结果表明,在整个过程中,差分相位检测的分辨率接近10〜(-6)rad /(Hz)〜(1/2)(10〜(-13)m /(Hz)〜(1/2))。在125 MHz带宽下,分别为100kHz带宽和10〜(-8)rad /(Hz)〜(1/2)(10〜(-15)m /(Hz)〜(1/2))电平,低于2.5兆瓦入射功率。

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