Infrared and Laser Engineering, Volume. 50, Issue 9, 20210616(2021)
Analysis of rotational velocity measurement accuracy and signal-to-noise ratio of balanced detection based on vortex beam (Invited)
[1] Padgett M. Detection of a spinning object using light's orbital angular momentum[J]. Science, 2, 764-768(2013).
[2] Zhang W, Gao J, Zhang D, et al. Free-space remote sensing of rotation at the photon-counting level[J]. Physical Review Applied, 10, 044014(2018).
[3] Zhang Z, Cen L, Zhang J, et al. Rotation velocity detection with orbital angular momentum light spot completely deviated out of the rotation center[J]. Opt Express, 28, 6859-6867(2020).
[4] Fu S, Wang T, Zhang Z, et al. Non-diffractive Bessel-Gauss beams for the detection of rotating object free of obstructions[J]. Opt Express, 25, 20098-20108(2017).
[5] Fu Ziling, Wang Zhi, Cui Can, et al. Angular velocity measurement based on rotational Doppler effect of vortex beam[J]. Laser & Optoelectronics Progress, 56, 180501(2019).
[6] Qiu S, Liu T, Li Z, et al. Influence of lateral misalignment on the optical rotational Doppler effect[J]. Appl Opt, 58, 2650-2655(2019).
[7] Qiu S, Liu T, Ren Y, et al. Detection of spinning objects at oblique light incidence using the optical rotational Doppler effect[J]. Opt Express, 27, 24781-24792(2019).
[8] Qiu S, Ren Y, Liu T, et al. Detecting the speed of a rotational cylinder based on Doppler effect of optical vortex[J]. Acta Optica Sinica, 40, 2026001(2020).
[9] Li Z, Liu T, Ren Y, et al. Direction-sensitive detection of a spinning object using dual-frequency vortex light[J]. Opt Express, 29, 7453-7463(2021).
[10] Guo Liren, Hu Yihua, Lizheng, et al. Influence of Local Oscillate power on micro-motion balanced heterodyne detection for Lidar[J]. Infrared and Laser Engineering, 44, 2933-2937(2015).
[11] Fink D. Coherent detection signal-to-noise[J]. Appl Opt, 14, 689-690(1975).
[12] Liang Hexi, Dai Yonghong, Ai Yong, et al. Design and test of space optical coupling balance detector[J]. Infrared and Laser Engineering, 46, 0320002(2017).
[13] Xiao Shilin, Zeng Qingji. Application of optical coherent detection[J]. Optical Coherent Technology, 28-31(2003).
[14] Zhong Zhi, Tan Jiubin, Ma Hongwen, et al. Study on fast ultra-precision measurement model in laser heterodyne interferometry[J]. Acta Optica Sinica, 25, 791-794(2005).
[15] Gao Long, Wang Chunhui, Li Yanchao, et al. Theory analysis of polarization mixing error in dual-balanced heterodyne detection[J]. Infrared and Laser Engineering, 39, 422-426(2010).
[16] Li Yu, Zhang Shu, Zhou Jian, et al. Application of dual-balanced detection in laser velocimeter[J]. High Power Laser and Particle Beams, 28, 101004(2016).
[17] Yuen H P, Chan V W. Noise in homodyne and heterodyne detection: errata[J]. Opt Lett, 8, 345(1983).
[18] Abbas G, Chan V, Ting Y. A dual-detector optical heterodyne receiver for local oscillator noise suppression[J]. Journal of Lightwave Technology, 3, 1110-1122(1985).
[19] Rosales-Guzman C, Hermosa N, Belmonte A, et al. Experimental detection of transverse particle movement with structured light[J]. Sci Rep, 3, 2815(2013).
[20] Rosales-Guzman C, Hermosa N, Belmonte A, et al. Direction-sensitive transverse velocity measurement by phase-modulated structured light beams[J]. Opt Lett, 39, 5415-5418(2014).
[21] Anderson A Q, Strong E F, Heffernan B M, et al. Detection technique effect on rotational Doppler measurements[J]. Opt Lett, 45, 2636-2639(2020).
[22] [22] Li Yu. Research on the heterodyne detection system based on balanced detect[D]. Changsha: National University of Defense Technology, 2015. (in Chinese)
[23] [23] Xiong Daming. Research on key techniques of optical heterodyne balance detection[D]. Wuhan: Wuhan Research Institute of Posts Telecommunications, 2020. (in Chinese)
[24] Liang Hexi, Dai Yonghong, Ai Yong, et al. Influence of local oscillator power on sensitivity of coherent detection of space balanced detection[J]. Optics and Precision Engineering, 25, 334-341(2017).
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Qimeng Sha, Weijie Wang, Tong Liu, Zhengliang Liu, Song Qiu, Yuan Ren. Analysis of rotational velocity measurement accuracy and signal-to-noise ratio of balanced detection based on vortex beam (Invited)[J]. Infrared and Laser Engineering, 2021, 50(9): 20210616
Category: Special issue-Manipulation on optical vortex and its sensing application
Received: Aug. 28, 2021
Accepted: --
Published Online: Oct. 28, 2021
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