Enhanced vibration measurement using differential dynamic holographic interferometry with dual photorefractive crystals

IF 5 2区 物理与天体物理 Q1 OPTICS Optics and Laser Technology Pub Date : 2025-10-01 Epub Date: 2025-04-21 DOI:10.1016/j.optlastec.2025.113000
Jiongye Gao, Bin Zhang, Qibo Feng, Xin Zhang, Liwen Gao
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Abstract

A differential dynamic holographic interferometry based on dual BSO photorefractive crystals without the need for an external electric field is studied theoretically and experimentally in this work. The proposed system allows for simultaneous measurement of in-plane and out-of-plane vibrations by using a dual-crystal symmetrical optical path and corresponding differential processing. By adjusting the polarization state of the reference beam to introduce an additional phase shift of π/2, high sensitivity linear demodulation of small phase-intensity vibration signals can be achieved without an external electric field on the crystals. By ensuring the polarity of this additional phase shift the same or opposite in two symmetrical interference optical paths, dual-path differential signals corresponding to in-plane or out-of-plane components can be obtained. The signal noise can be effectively suppressed and the sensitivity is improved by the differential processing of the dual-path signals, by which the high-sensitivity detection of high-frequency micro vibrations can be achieved. Both the numerical analysis and experiments have been carried out to confirm the feasibility of the proposed method, demonstrating its ability to accurately detect vibrations without the risk associated with high voltage. Furthermore, a built-in phase modulator is added in the system to simulate out-of-plane vibration, which serves to calibrate the symmetry and accuracy of the system. The proposed system provides a powerful and reliable tool for contactless detection both in-plane and out-of-plane components of high-frequency micro vibrations.
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利用带有双光折射晶体的差分动态全息干涉仪加强振动测量
本文从理论和实验两方面研究了基于双BSO光折变晶体的不需要外加电场的微分动态全息干涉测量。该系统采用双晶对称光路和相应的差分处理,可以同时测量面内和面外振动。通过调节参考光束的偏振态,引入π/2的额外相移,可以在不施加外加电场的情况下实现小相强振动信号的高灵敏度线性解调。通过确保这一额外相移的极性在两个对称干涉光路中相同或相反,可以获得对应于平面内或面外分量的双路差分信号。通过对双路信号进行差分处理,有效地抑制了信号噪声,提高了灵敏度,实现了高频微振动的高灵敏度检测。数值分析和实验都证实了所提出方法的可行性,证明了它能够准确地检测振动,而没有与高压相关的风险。此外,在系统中增加了内置相位调制器来模拟面外振动,以校准系统的对称性和精度。该系统为高频微振动的面内和面外分量的非接触式检测提供了强大而可靠的工具。
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来源期刊
CiteScore
8.50
自引率
10.00%
发文量
1060
审稿时长
3.4 months
期刊介绍: Optics & Laser Technology aims to provide a vehicle for the publication of a broad range of high quality research and review papers in those fields of scientific and engineering research appertaining to the development and application of the technology of optics and lasers. Papers describing original work in these areas are submitted to rigorous refereeing prior to acceptance for publication. The scope of Optics & Laser Technology encompasses, but is not restricted to, the following areas: •development in all types of lasers •developments in optoelectronic devices and photonics •developments in new photonics and optical concepts •developments in conventional optics, optical instruments and components •techniques of optical metrology, including interferometry and optical fibre sensors •LIDAR and other non-contact optical measurement techniques, including optical methods in heat and fluid flow •applications of lasers to materials processing, optical NDT display (including holography) and optical communication •research and development in the field of laser safety including studies of hazards resulting from the applications of lasers (laser safety, hazards of laser fume) •developments in optical computing and optical information processing •developments in new optical materials •developments in new optical characterization methods and techniques •developments in quantum optics •developments in light assisted micro and nanofabrication methods and techniques •developments in nanophotonics and biophotonics •developments in imaging processing and systems
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