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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Common mode noise rejection properties of amplitude and phase noise in a heterodyne interferometer
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Common mode noise rejection properties of amplitude and phase noise in a heterodyne interferometer

机译:外差式干涉仪中振幅和相位噪声的共模噪声抑制特性

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摘要

High precision metrology systems based on heterodyne interferometry can measure the position and attitude of objects to accuracies of picometer and nanorad, respectively. A frequently found feature of the general system design is the subtraction of a reference phase from the phase of the position interferometer, which suppresses low frequency common mode amplitude and phase fluctuations occurring in volatile optical path sections shared by both the position and reference interferometer. Spectral components of the noise at frequencies around or higher than the heterodyne frequency, however, are generally transmitted into the measurement band and may limit the measurement accuracy. Detailed analytical calculations complemented with Monte Carlo simulations show that high frequency noise components may also be entirely suppressed, depending on the relative difference of measurement and reference phase, which may be exploited by corresponding design provisions. While these results are applicable to any heterodyne interferometer with certain design characteristics, specific calculations and related discussions are given for the example of the optical metrology system of the LISA Pathfinder mission to space.
机译:基于外差干涉法的高精度计量系统可以分别测量物体的位置和姿态,以达到皮米级和纳弧度的精度。一般系统设计的一个常见特征是从位置干涉仪的相位减去参考相位,从而抑制了低频共模振幅和由位置干涉仪和参考干涉仪共享的易失性光路部分中出现的相位波动。但是,通常在外差频率附近或高于外差频率的频率上,噪声的频谱分量会传输到测量频带中,并且可能会限制测量精度。详细的分析计算与蒙特卡洛模拟相辅相成,表明高频噪声分量也可能被完全抑制,这取决于测量和参考相位的相对差,相应的设计规定可能会利用这些噪声。虽然这些结果适用于具有某些设计特征的任何外差式干涉仪,但针对LISA探路者太空飞行光学测量系统的示例给出了特定的计算和相关的讨论。

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