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共光路双频外差干涉法测量模拟磁头磁盘静态间隙
引用本文:岳兆阳,张蕊,白少先,孟永钢,殷纯永.共光路双频外差干涉法测量模拟磁头磁盘静态间隙[J].中国激光,2005,32(12):664-1667.
作者姓名:岳兆阳  张蕊  白少先  孟永钢  殷纯永
作者单位:1. 清华大学摩擦学国家重点实验室,北京,100084;清华大学精密仪器与机械学系,北京,100084
2. 清华大学精密仪器与机械学系,北京,100084
3. 清华大学摩擦学国家重点实验室,北京,100084
基金项目:国家973计划(2003CB716205)资助项目.
摘    要:提出了一种共光路外差干涉测量模拟磁头磁盘静态间隙的方法,该方法以低频差横向塞曼双频激光器作为光源,采用专门设计的双折射透镜分光和相位测量技术,实现了对光波半波长的3600细分,从而使测量分辨率达到0.1nm。原理实验结果表明,该系统在无恒温的普通实验室条件下,1h内稳定测量实验结果漂移小于4nml利用压电陶瓷(PZT)微动工作台(步进分辨率1nm)驱动反射镜(模拟磁头)产生位移,在1μm范围内与该系统测量结果进行比对,得到线性相关系数优于0.9998。

关 键 词:测量  外差干涉  共光路  相位测量  磁头磁盘  静态间隙
文章编号:0258-7025(2005)12-1664-04
收稿时间:2005-03-18
修稿时间:2005-06-01

Measurement of Simulated Disk/Slider Stationary Spacing by Common-Path Dual-Frequency Interferometry
YUE Zhao-yang,ZHANG Rui,BAI Shao-xian,MENG Yong-gang,YIN Chun-yong.Measurement of Simulated Disk/Slider Stationary Spacing by Common-Path Dual-Frequency Interferometry[J].Chinese Journal of Lasers,2005,32(12):664-1667.
Authors:YUE Zhao-yang  ZHANG Rui  BAI Shao-xian  MENG Yong-gang  YIN Chun-yong
Affiliation:1 State Key Laboratory of Tribology ; 2 Department of Precision Instruments, Tsinghua University, Beijing 100084, China
Abstract:A novel method for measuring the simulated disk/slider stationary spacing is proposed in this paper, based on common-path heterodyne interferometry that utilises a transverse Zeeman laser with low beat frequency and a special designed birefringent lens (as beam splitter). The phase measurement technology is adopted to divide half wavelength of light by a factor of 3600, hence a resolution of 0.1 nm can be attained. The experimental results show that in ordinary laboratory condition, without air conditioning, the shift of phase measurement about the stability of system is approximately 4° in a hour, and calibration with a commercial PZT micro-drive working table (step resolution: 1 nm; extent: 1 μm) which drives a mirror (simulative slider), gives the linearly correlation coefficient of 0.9998.
Keywords:measurement  heterodyne interferometry  common-path  phase measurement  slider/disk  stationary spacing
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