Absolute distance measurement by intensity detection using a mode-locked femtosecond pulse laser

被引:48
|
作者
Wu, Hanzhong [1 ]
Zhang, Fumin [1 ]
Cao, Shiying [2 ]
Xing, Shujian [1 ]
Qu, Xinghua [1 ]
机构
[1] Tianjin Univ, State Key Lab Precis Measurement Technol & Instru, Tianjin 300072, Peoples R China
[2] Natl Inst Metrol, Div Time & Frequency Metrol, Beijing 100013, Peoples R China
来源
OPTICS EXPRESS | 2014年 / 22卷 / 09期
基金
中国国家自然科学基金; 高等学校博士学科点专项科研基金;
关键词
FREQUENCY-COMB; LONG; AIR;
D O I
10.1364/OE.22.010380
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We propose an interferometric method that enables to measure a distance by the intensity measurement using the scanning of the interferometer reference arm and the recording of the interference fringes including the brightest fringe. With the consideration of the dispersion and absorption of the pulse laser in a dispersive and absorptive medium, we investigate the cross-correlation function between two femtosecond laser pulses in the time domain. We also introduce the measurement principle. We study the relationship between the position of the brightest fringe and the distance measured, which can contribute to the distance measurement. In the experiments, we measure distances using the method of the intensity detection while the reference arm of Michelson interferometer is scanned and the fringes including the brightest fringe is recorded. Firstly we measure a distance in a range of 10 mu m. The experimental results show that the maximum deviation is 45 nm with the method of light intensity detection. Secondly, an interference system using three Michelson interferometers is developed, which combines the methods of light intensity detection and time-of-flight. This system can extend the non-ambiguity range of the method of light intensity detection. We can determine a distance uniquely with a larger non-ambiguity range. It is shown that this method and system can realize absolute distance measurement, and the measurement range is a few micrometers in the vicinity of Nl(pp), where N is an integer, and l(pp) is the pulse-to-pulse length. (C)2014 Optical Society of America
引用
收藏
页码:10380 / 10397
页数:18
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