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Study of a dual-frequency laser interferometer with unique optical subdivision techniques

机译:具有独特光学细分技术的双频激光干涉仪的研究

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摘要

A dual-frequency laser interferometer has been developed based on a low-performance commercial interferometer. An optical resolution of 1.24 nm and a nanometer-scale accuracy have been achieved by using unique techniques to obtain an optical subdivision factor of 1/8. A method for reducing static positioning errors was also shown. The measurement of a free-falling body was performed to test the maximum achievable target velocity of the device. The experimental setup for measuring the static positioning errors was also given. The new interferometer could be widely used in nanometer-scale fabrications and measurements.
机译:基于低性能商业干涉仪已经开发了双频激光干涉仪。通过使用独特的技术获得1/8的光学细分因子,已实现了1.24 nm的光学分辨率和纳米级精度。还显示了一种减少静态定位误差的方法。进行自由落体的测量以测试设备可达到的最大目标速度。还给出了用于测量静态定位误差的实验装置。新的干涉仪可广泛用于纳米级的制造和测量中。

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