Picosecond laser ranging at 1.5 µm using dispersive interferometry

IF 3 Q3 Physics and Astronomy Results in Optics Pub Date : 2025-05-01 Epub Date: 2025-02-21 DOI:10.1016/j.rio.2025.100799
Behzad Boroomandisorkhabi, Xiangrui Su, Mina Esmaeelpour
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引用次数: 0

Abstract

Precise displacement measurement is essential for engineering, industrial, and scientific purposes. Ultrafast laser techniques are preferred for real-time applications due to their single-shot measurement capability and high resolution. To create a high-performance and cost-effective system with less complexity, capable of achieving real-time measurement with high micrometer spatial resolution, we have used a picosecond pulsed laser at the telecommunication wavelength of 1.5 μm in combination with dispersive interferometry. The instantaneous frequency measurement took place using the time-stretch technique incorporating dispersion compensating fiber induced chirp. Results using a 7-picosecond laser at 1.5 μm with a 10 MHz repetition rate are presented. Frequency resolution of 401.20 MHz and precision of 8.25 MHz corresponding to 10.48 μm displacement accuracy are achieved.
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采用色散干涉法测量1.5µm的皮秒激光
精确的位移测量对于工程,工业和科学目的是必不可少的。超快激光技术由于其单次测量能力和高分辨率而成为实时应用的首选。为了创建一个高性能、低成本、低复杂性的系统,能够实现高微米空间分辨率的实时测量,我们在1.5 μm的通信波长下使用了皮秒脉冲激光,并结合了色散干涉测量。瞬时频率测量采用了色散补偿光纤诱导啁啾的时间拉伸技术。给出了在1.5 μm波长下,重复频率为10 MHz的7皮秒激光的实验结果。频率分辨率为401.20 MHz,精度为8.25 MHz,位移精度为10.48 μm。
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来源期刊
Results in Optics
Results in Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
2.50
自引率
0.00%
发文量
115
审稿时长
71 days
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