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Development of a novel laser dual-axis five-degrees-of-freedom measuring system

机译:新型激光双轴五自由度测量系统的开发

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摘要

In this paper, it presents a useful dual-axial five-degrees-of-freedom measuring system with five degrees of freedom (DoFs) for the simultaneous measurement of five-DoF motion errors of a nano-stage. The system integrates a miniature fibre-coupled laser interferometer with specially designed optical paths and quadrant detectors, capable of measuring five-DoF motion errors. It presents a new precision five-DoF measuring system which has been developed and implemented for the simultaneous measurement of five-DoF motion errors (two linear positions, as well as pitch, roll, and yaw) of a nano-stage. In this paper, the five-DoF laser interferometer was produced by designing the optical path from the one-DoF laser interferometer. The system employs two three-DoF interferometers to detect two position errors and three angular errors of the nano-stage. The experimental set-ups and measuring procedure and a systematic calculated method for the error verification are presented as well. The resolution of measuring the angular errors component is about 0.06''. [PUBLICATION ABSTRACT]
机译:在本文中,它提出了一种有用的具有五个自由度(DoF)的双轴五自由度测量系统,用于同时测量纳米级的五自由度运动误差。该系统将微型光纤耦合激光干涉仪与专门设计的光路和象限检测器集成在一起,能够测量五自由度运动误差。它提供了一种新的精密五自由度测量系统,该系统已经开发并实现了用于同时测量纳米平台的五自由度运动误差(两个线性位置以及俯仰,滚动和偏航)。本文通过设计单自由度激光干涉仪的光路来生产五自由度激光干涉仪。该系统采用两个三自由度干涉仪来检测纳米级的两个位置误差和三个角度误差。还提出了用于误差验证的实验装置和测量程序以及系统的计算方法。测量角度误差分量的分辨率约为0.06英寸。 [出版物摘要]

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