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激光干涉共焦显微镜
引用本文:邵宏伟,徐毅,高思田,叶孝佑,陈允昌,金其海,许婕. 激光干涉共焦显微镜[J]. 计量学报, 2004, 25(2): 104-106
作者姓名:邵宏伟  徐毅  高思田  叶孝佑  陈允昌  金其海  许婕
作者单位:中国计量科学研究院,北京,100013;中国计量科学研究院,北京,100013;中国计量科学研究院,北京,100013;中国计量科学研究院,北京,100013;中国计量科学研究院,北京,100013;中国计量科学研究院,北京,100013;中国计量科学研究院,北京,100013
基金项目:科技部"九五"国家重点攻关项目(96 A23 02 16)
摘    要:光学共焦显微镜现己广泛地应用于微机械、生物样品、材料及微电子器件的三维测量,但经典的光学共焦显微镜由于原理性限制,其分辨率与精确度远低于接触式传感器。现结合双频激光干涉仪和共焦显微镜的优点,使激光干涉共焦显微镜不仅横向分辨率高,而且使纵向分辨率达到0.1nm,扩展不确定度U95=13.4nm,使之能测量纳米量级形位变化,而且测量值直接溯源至激光波长。

关 键 词:计量学  共焦显微镜  双频激光干涉仪  测量  溯源
文章编号:1000-1158(2004)02-0104-03
修稿时间:2003-01-02

Laser Interference Confocal Microscopy
SHAO Hong-wei,XU Yi,GAO Si-tian,YE Xiao-yu,CHEN Yun-chang,JIN Qi-hai,XU Jie. Laser Interference Confocal Microscopy[J]. Acta Metrologica Sinica, 2004, 25(2): 104-106
Authors:SHAO Hong-wei  XU Yi  GAO Si-tian  YE Xiao-yu  CHEN Yun-chang  JIN Qi-hai  XU Jie
Abstract:Optical confocal microscopies are very interesting used in many fields: such as non-contact 3D measurement for fabricated materials, biological specimens, geological samples, machined parts, integrated circuit surface profile informations. However, since the restricting of depth response, the depth accuracy and resolvability of the classic confocal microscope are lower than that of contact sensor. Here it is by use of laser heterodyne interference technology to improve the confocal microscope's accuracy and resolution. The resolvability is within reached 0.1 nm and the uncertainty (U_(95)) is 13.4 nm in Z direction and the measuring length can be traced directly to wave length of the laser.
Keywords:Metrology  Confocal microscopy  Laser heterodyne interferometer  Measurement  Traceability
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