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Investigation of some critical aspects of on-line surface measurement by a wavelength-division-multiplexing technique

机译:用波分复用技术研究在线表面测量的一些关键方面

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摘要

Some critical aspects of a new kind of on-line measurement technique for micro and nanoscale surface measurements are described. This attempts to use spatial light-wave scanning to replace mechanical stylus scanning, and an optical fibre interferometer to replace optically bulky interferometers for measuring the surfaces. The basic principle is based on measuring the phase shift of a reflected optical signal. Wavelength-division-multiplexing and fibre Bragg grating techniques are used to carry out wavelength-to-field transformation and phase-to-depth detection, allowing a large dynamic measurement ratio (range/resolution) and high signal-to-noise ratio with remote access. In effect the paper consists of two parts: multiplexed fibre interferometry and remote on-machine surface detection sensor (an optical dispersive probe). This paper aims to investigate the metrology properties of a multiplexed fibre interferometer and to verify its feasibility by both theoretical and experimental studies. Two types of optical probes, using a dispersive prism and a blazed grating, respectively, are introduced to realize wavelength-to-spatial scanning.
机译:描述了一种用于微米和纳米级表面测量的新型在线测量技术的一些关键方面。这试图使用空间光波扫描来代替机械笔式扫描,并且使用光纤干涉仪来代替用于测量表面的光学笨重的干涉仪。基本原理基于测量反射光信号的相移。波分复用和光纤布拉格光栅技术用于执行波长到场的转换以及相位到深度的检测,从而可以实现较大的动态测量比(范围/分辨率)和较高的信噪比,并具有远程访问。实际上,本文由两部分组成:多路光纤干涉测量和远程机上表面检测传感器(光学色散探头)。本文旨在研究多路复用光纤干涉仪的计量学特性,并通过理论和实验研究验证其可行性。介绍了两种分别使用色散棱镜和闪耀光栅的光学探头,以实现波长到空间的扫描。

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