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大学物理实验, 2025, 38(4): 50-57     https://doi.org/10,14139/j.cnki.cn22-1228.2025.04.009
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光学微位移测量及其在音叉受迫振动中的应用:光杠杆与干涉法集成研究
罗诣杰,唐裕棋,杨家齐,张晶铭,张心远,王 振,颜 浩 *
华中科技大学 物理学院 引力与量子物理湖北省重点实验室,湖北 武汉430074
Optical Micro-Displacement Measurement and Its Application in Forced Vibration of a Tuning Fork:Integrated Study of the Optical Lever and Interferometric Methods
LUO Yijie,TANG Yuqi,YANG Jiaqi,ZHANG Jingming,ZHANG Xinyuan,WANG Zhen,YAN Hao *
Hubei Key Laboratory of Gravitation and Quantum Physics,School of Physics,Huazhong University of Science and Technology,Wuhan 430074,China
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摘要 

构建了一套基于光学微位移测量的音叉受迫振动实验系统,集成了光杠杆法与迈克尔逊干涉法两种经典光学测量技术。首先,介绍了光学微位移测量技术的基本原理及其高灵敏度特点,重点阐述了光杠杆法在角位移测量中的实时响应优势和干涉法在平动微米及亚微米级位移测量中的高分辨率与定量能力。随后,将这两种测量方法应用于音叉受迫振动的动力学研究,通过频率扫描获得了音叉的谐振频率及品质因子。实验结果表明,光杠杆法结构简便,适合动态监测振动形态,而迈克尔逊干涉法则提供了更精确的振幅量化及频率响应数据。两者配合,提升了测量的全面性和可靠性。该实验系统不仅增强了振动动力学的教学直观性,也为学生掌握光学测量技术及数据分析提供了良好平台。未来可进一步结合调制解调及电学检测方法,拓展实验的深度与广度,促进力学振动与精密测量领域的教学创新。

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罗诣杰
唐裕棋
杨家齐
张晶铭
张心远
王 振
颜 浩
关键词:  微小位移测量  光杠杆  激光干涉  音叉受迫振动     
Abstract: 

This work presents a forced vibration experimental system for a tuning fork based on optical micro-displacement measurement,integrating two classical optical measurement techniques:the optical lever method

and the Michelson interferometric method. Firstly,the fundamental principles of optical micro-displacement measurement and its high sensitivity characteristics are introduced,emphasizing the real-time response advantage of the optical lever method in angular displacement measurement and the high resolution and quantitative capability of the interferometric method in translational micro- and submicron displacement measurement.Subsequently,these two methods are applied to the dynamic study of forced vibration in a tuning fork,where the resonance frequency and quality factor are obtained through frequency scanning.experimental results demonstrate that the optical lever method features a simple structure suitable for dynamic monitoring of vibration patterns,while the Michelson interferometric method provides more precise amplitude quantification and frequency response data. Their combination enhances the comprehensiveness and reliability of the measurement.This experimental system not only improves the intuitiveness of vibration dynamics teaching but also provides an excellent platform for students to master optical measurement techniques and data analysis.Future work may integrate modulation-demodulation and electrical detection methods to further expand the depth and breadth of experiments,promoting innovation in the teaching of mechanical vibration and precision measurement.

Key words:  micro-displacement measurement    optical lever    laser interferometry    forced vibration of tuning fork
               出版日期:  2025-08-25      发布日期:  2025-08-25      整期出版日期:  2025-08-25
ZTFLH:  O 4-36  
基金资助: 

国家自然科学基金重点专项(2022YFC2203901)

引用本文:    
罗诣杰, 唐裕棋, 杨家齐, 张晶铭, 张心远, 王 振, 颜 浩 . 光学微位移测量及其在音叉受迫振动中的应用:光杠杆与干涉法集成研究 [J]. 大学物理实验, 2025, 38(4): 50-57.
LUO Yijie, TANG Yuqi, YANG Jiaqi, ZHANG Jingming, ZHANG Xinyuan, WANG Zhen, YAN Hao . Optical Micro-Displacement Measurement and Its Application in Forced Vibration of a Tuning Fork:Integrated Study of the Optical Lever and Interferometric Methods . Physical Experiment of College, 2025, 38(4): 50-57.
链接本文:  
https://dawushiyan.jlict.edu.cn/CN/10,14139/j.cnki.cn22-1228.2025.04.009  或          https://dawushiyan.jlict.edu.cn/CN/Y2025/V38/I4/50
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