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一种用于直流和低频位移测量的具有亚皮米分辨率的光纤干涉仪。

A fiber-optic interferometer with subpicometer resolution for dc and low-frequency displacement measurement.

作者信息

Smith D T, Pratt J R, Howard L P

机构信息

National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.

出版信息

Rev Sci Instrum. 2009 Mar;80(3):035105. doi: 10.1063/1.3097187.

Abstract

We have developed a fiber-optic interferometer optimized for best performance in the frequency range from dc to 1 kHz, with displacement linearity of 1% over a range of +/- 25 nm, and noise-limited resolution of 2 pm. The interferometer uses a tunable infrared laser source (nominal 1550 nm wavelength) with high amplitude and wavelength stability, low spontaneous self-emission noise, high sideband suppression, and a coherence control feature that broadens the laser linewidth and dramatically lowers the low-frequency noise in the system. The amplitude stability of the source, combined with the use of specially manufactured "bend-insensitive" fiber and all-spliced fiber construction, results in a robust homodyne interferometer system, which achieves resolution of 40 fm Hz(-1/2) above 20 Hz and approaches the shot-noise-limit of 20 fm Hz(-1/2) at 1 kHz for an optical power of 10 microW, without the need for differential detection. Here we describe the design and construction of the interferometer, as well as modes of operation, and demonstrate its performance.

摘要

我们开发了一种光纤干涉仪,该干涉仪针对直流至1 kHz频率范围内的最佳性能进行了优化,在+/- 25 nm范围内位移线性度为1%,噪声限制分辨率为2 pm。该干涉仪使用可调谐红外激光源(标称波长1550 nm),具有高幅度和波长稳定性、低自发自发射噪声、高边带抑制以及相干控制功能,可拓宽激光线宽并显著降低系统中的低频噪声。光源的幅度稳定性,结合使用特殊制造的“抗弯曲”光纤和全熔接光纤结构,形成了一个坚固的零差干涉仪系统,该系统在20 Hz以上实现了40 fm Hz(-1/2)的分辨率,对于10 μW的光功率,在1 kHz时接近20 fm Hz(-1/2)的散粒噪声极限,无需差分检测。在此,我们描述了干涉仪的设计与构造、操作模式,并展示了其性能。

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