4.5 Article

Spatially Separated Heterodyne Grating Interferometer for In-Plane and Out-of-Plane Displacement Measurements

期刊

PHOTONICS
卷 9, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/photonics9110830

关键词

grating interferometry; heterodyne interferometry; displacement measurement

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资金

  1. National Major Science and Technology Projects of China [2017ZX02101006-005]

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In this study, a spatially separated heterodyne grating interferometer that measures in- and out-of-plane displacements is proposed. The experiment results show that the interferometer has high stability and accuracy, and has a large misalignment tolerance.
Grating interferometers that measure in-plane and out-of-plane displacements are not only effective two-degree-of-freedom (DOF) sensors, but are also basic units of six-DOF measurement systems. Besides resolution and accuracy, periodic nonlinear errors, misalignment tolerance, and size of reading heads are more crucial than ever. In this work, a spatially separated heterodyne grating interferometer that measures in- and out-of-plane displacements is proposed. A prototype with 3 mm diameter beams with a size of 69 mm x 51 mm x 41 mm was built and tested. The experiment results show that the 30 s stability is 2.5 nm; the periodic nonlinear errors of the two measuring directions are less than the resolutions (0.25 nm for in-plane motions and 0.15 nm for out-of-plane motions). Double-diffracted configuration ensures that the misalignment tolerances are three axes larger than +/- 2 mrad.

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