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晚上10点下令使用外差干涉测量法进行机械位移测量。

10-pm-order mechanical displacement measurements using heterodyne interferometry.

作者信息

Dong Nguyen Thanh, Higuchi Masato, Tung Vu Thanh, Wei Dong, Aketagawa Masato

出版信息

Appl Opt. 2020 Sep 20;59(27):8478-8485. doi: 10.1364/AO.400682.

Abstract

In this paper, we present 10-pm-order mechanical displacement measurements using heterodyne interferometry. The measuring system includes a single-path heterodyne interferometer and a phase meter based on a phase-locked loop (PLL). It is not easy to measure a mechanical displacement of 10 pm or less owing to electronics and environmental noises in the interferometer. To solve this problem, the improvement of the noise floor is required for the phase meter. A PLL algorithm, which is programmed on a field-programmable gate array module, is used for efficient noise reduction of the phase meter. The interferometer combined with a stiff piezoelectric flexure stage is placed in a vacuum chamber. The measurement comparisons and the noise floor evaluations are performed between air and vacuum to evaluate effects from their environments. The interferometer has two spatially separated beams with different frequencies and two balanced optical arms. The measurement results demonstrate that the system combined with the above components is capable of measuring mechanical displacements of 11 pm in air and vacuum. A noise floor of 0.2 pm/ between 50 Hz and 100 Hz can be obtained in vacuum. In this paper, the setup of the interferometer, the signal processing of the PLL, experiments, and results are discussed.

摘要

在本文中,我们展示了使用外差干涉测量法进行的皮米级机械位移测量。测量系统包括一个单路径外差干涉仪和一个基于锁相环(PLL)的相位计。由于干涉仪中的电子噪声和环境噪声,测量10皮米或更小的机械位移并非易事。为了解决这个问题,需要提高相位计的本底噪声。一种在现场可编程门阵列模块上编程的锁相环算法被用于高效降低相位计的噪声。与刚性压电弯曲平台相结合的干涉仪被放置在真空室内。在空气和真空环境下进行测量比较和本底噪声评估,以评估环境的影响。该干涉仪有两束频率不同且空间分离的光束以及两个平衡光学臂。测量结果表明,结合上述组件的系统能够在空气和真空中测量11皮米的机械位移。在真空中,50赫兹至100赫兹之间可获得0.2皮米/的本底噪声。本文讨论了干涉仪的设置、锁相环的信号处理、实验及结果。

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