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具有利特罗结构的简单紧凑的基于光栅的外差干涉仪,用于二维位移的高精度和远程测量。

Simple and compact grating-based heterodyne interferometer with the Littrow configuration for high-accuracy and long-range measurement of two-dimensional displacement.

作者信息

Lv Qiang, Liu Zhaowu, Wang Wei, Li Xiaotian, Li Shuo, Song Ying, Yu Hongzhu, Li Wenhao

出版信息

Appl Opt. 2018 Nov 1;57(31):9455-9463. doi: 10.1364/AO.57.009455.

DOI:10.1364/AO.57.009455
PMID:30461992
Abstract

We propose a simple and compact reading head with the Littrow configuration that will increase measurement range and reduce the complexity of a two-dimensional grating-based interferometer. The reading head contains only a beam splitter, two polarizing beam splitter modules, and two mirrors. The theoretical resolutions in two directions are 0.27 nm and 0.18 nm, respectively. In comparison with a dual-frequency laser interferometer, the proposed interferometer can measure displacement from 3 nm to 10 mm with high accuracy. The 3σ values in two directions for the difference are 1.67 nm and 1.35 nm for a displacement of 9 nm. Repeatability for a displacement of 1 μm is better than 2 nm.

摘要

我们提出了一种采用利特罗配置的简单紧凑的读数头,它将增加测量范围并降低基于二维光栅的干涉仪的复杂性。该读数头仅包含一个分束器、两个偏振分束器模块和两个反射镜。两个方向上的理论分辨率分别为0.27纳米和0.18纳米。与双频激光干涉仪相比,所提出的干涉仪能够高精度地测量3纳米至10毫米的位移。对于9纳米的位移,两个方向上差值的3σ值分别为1.67纳米和1.35纳米。1微米位移的重复性优于2纳米。

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