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Volume 39 Issue 3
Mar.  2015
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Laser power measurement systems based on lock-in amplifiers and LabVIEW

  • Received Date: 2014-04-15
    Accepted Date: 2014-05-06
  • In order to reduce the impact of noise on laser optical experiments, a lock-in amplifier and an optical chopper were used. The laser was modulated at a specific frequency by the chopper and the frequency was sent to the lock-in amplifier as a reference signal. The useful signal was extracted with the lock-in amplifier based on the coherent detection method. In order to relieve the operator's labor during experiments, an automatic software system under LabVIEW software platform was developed to operate the experiments and record data automatically, which greatly simplified the operation process. The results show that measurement noise of this method reduced from 9.1% to 4.7% compared with laser intensity measurement with a power meter directly. The automatic software system saves more than 50% of time compared with manual recording of data.
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    GOPINATH J T. Studies of third-order nonlinearities in materials and devices for ultrafast lasers[D].Cambridge, Massachusetts,USA: Massachusetts Institute of Technology, 2005: 71-128. SMEKTALA F, QUEMARD C, COUDERC V, et al. Non-linear optical properties of chalcogenide glasses measured by z-scan. Journal of Non-Crystalline Solids, 2000, 274(9): 232-237. BORRI P, LANGBEIN W, MRK J, et al. Heterodyne pump-probe and four-wave mixing in semiconductor optical amplifiers using balanced lock-in detection. Optics Communications, 1999,169 (10): 317-324. TANG J H. Theoretical analysis and experimental study on laser pulses noise. Taiyuan: Taiyuan University of Technology, 2007: 5-33(in Chinese). JIANG H,WU H J, WU Y F. A novel ultra-broadband photoelectric detection module. Laser Technology, 2013, 37(1): 16-19(in Chinese). ZHOU B, GAO Y, HE Y. Design of a narrow band FBAR band-pass filter. Micronanoelectronic Technology, 2013, 50(8): 487-493 (in Chinese). ZHANG D, LIU X H, ZHANG J L . Design of lock-in amplifier circuit and developed for weak signal detection. Computer Engineering and Applications, 2013, 49(15):210-214(in Chinese). YU H, JIAN T Ch, WANG H J. Noise analysis of photoelectric detection circuit and research on error compensation methods. Modern Electronics Technique, 2011, 34(2): 195-201(in Chinese). LI W H, ZHUANG Y Q, DU L, et al. Quantitative analysis of noise's linearity and Gaussianity in electronic devices. Journal of Xidian University, 2009, 36(6): 1059-1062(in Chinese). HAN X E, LI Zh, LIU L Y, et al. Application of SR850 lock-in amplifier in measurement of laser scattering intensity. Chinese Journal of Lasers, 2009,36(12): 1059-1062 (in Chinese). KANG Y T, HU X Y, WANG B W. Weak signal detection circuit based on lock-in amplifier. Electronic Design Engineering, 2013, 21(6): 162-164 (in Chinese). WANG Q. Application of controlling lock in amplifier is in the target laser scattering experiment on LabVIEW. Xi'an: Xi'an Technological University, 2006: 39-48(in Chinese). ZHENG Zh W, ZHAO Ch J, LU Sh B, et al. Microwave and optical saturable absorption in graphene. Optics Express, 2012, 20(21): 23201-23214. ZHAO Zh W, ZHANG Y J,SHEN Ch. Design of a photoelectric conversion system for pulse laser fuze. Laser Technology, 2012,36(3): 326-329(in Chinese). BI X L, ZHAO W L, ZHANG X G. Design of laser beam z-scan system based on LabVIEW. Electro-Optic Technology Application, 2011, 26(1): 8-11 (in Chinese).
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Laser power measurement systems based on lock-in amplifiers and LabVIEW

  • 1. School of Physics and Microelectronics Science, Hunan University, Changsha 410082, China

Abstract: In order to reduce the impact of noise on laser optical experiments, a lock-in amplifier and an optical chopper were used. The laser was modulated at a specific frequency by the chopper and the frequency was sent to the lock-in amplifier as a reference signal. The useful signal was extracted with the lock-in amplifier based on the coherent detection method. In order to relieve the operator's labor during experiments, an automatic software system under LabVIEW software platform was developed to operate the experiments and record data automatically, which greatly simplified the operation process. The results show that measurement noise of this method reduced from 9.1% to 4.7% compared with laser intensity measurement with a power meter directly. The automatic software system saves more than 50% of time compared with manual recording of data.

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