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多像素光子计数器的信噪比特性 被引量:5

Signal-to-Noise Ratio Properties of Multi-Pixel Photon Counter
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摘要 以多像素光子计数器(MPPC)的光电特性和实验结果为基础,通过对传统的工作在线性模式下的雪崩光电二极管的信噪比公式进行修正,得到了适用于MPPC的信噪比表达式。对在随机光子探测模式下的信噪比表达式进行了数值计算和实验验证。数值模拟结果显示在随机光子照射下,最小可探测光子通量的量级为103 count/s,最小可探测功率量级为10-15 W。对短脉冲光子探测模式下的光子计数信噪比表达式进行了数值分析,结果显示,利用调节合适的光电子数等效阈值进行光子计数的方法能够大大提高探测器的信噪比,该方法相比于传统的光子探测器有明显而独特的优势,在短脉冲弱光探测的场合,诸如脉冲激光测距、高能粒子物理等方面有较大的应用前景。 The signal-to-noise ratio formulas of a multi-pixel photon counter (MPPC) are obtained based on its photoelectric characteristic and experimental results, and by revising the traditional signal-to-noise ratio (RsN) formula of linear mode avalanche photodiode (APD). The method is used for random photon detection mode and short-pulse photon detection mode, respectively. The numerical calculation results using the obtained RsN formula are consistent with the experimental results. The numerical results show that the minimum detectable photon flux is of the order of 10^3 count, s-1 , the minimum detectable power is about 10^- 15 W. Numerical analysis for the RSN formula of the short pulse photon detection mode is done. The results show that the RSN of the MPPC can be obviously improved by adjusting the photoelectron-number equivalent threshold of the MPPC. This method of the MPPC has its own advantage compared with the traditional photon detector. It has wide application prospect in the field of pulsed low-level light detection such as pulsed laser ranging and high-energy particle physics.
出处 《光学学报》 EI CAS CSCD 北大核心 2013年第3期53-59,共7页 Acta Optica Sinica
基金 教育厅自然科学基金(12JK0975) 陕西省自然科学基金(2012JQ8009) 西安工程大学博士科研启动金(BS1126)资助课题
关键词 探测器 多像素光子计数器 硅光电倍增器 信噪比 光电子数等效阈值 detectors multi-pixel photon counter silicon photomultiplier signal-to-noise ratio photoelectron- number equivalent threshold
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参考文献19

  • 1D. Renker, E. Lorenz. Advances in solid state photon detectors [J]. J. Instrum. , 2009, 4(4): 04004. 被引量:1
  • 2S. Korpar, R. Dolenec, K. Haraet al.. Silicon photomultiplier as a detector of Cherenkov photons [J]. Nucl. Instrum. & Meth. A, 2008, 595(11): 161-164. 被引量:1
  • 3Y. Kudenko. The near neutrino detector for the T2K experiment [J]. Nucl. Instrum. - Meth. A, 2009, $98(11): 289--295. 被引量:1
  • 4A. Braem, E. Chesi, C. Jorama al.. Wavelength shifter strips and G-APD arrays for the read-out of the z-coordinate in axial PET modules [J]. Nucl. Instrum. &Meth. A, 2008, 586(12): 300-308. 被引量:1
  • 5Lukasz Mik, Jacek Stepiefl, Marcin Jastrza-b et al.. System for low intensity fluorescence light measurement based on silicon photomultiplier [C]. Gliwice- The International Conference of Signals and Electronic Systems, 2010. 383-386. 被引量:1
  • 6张合勇,郭劲,赵帅,王挺峰,刘立生.基于多像素光子计数器的赝热光场Fano因子研究[J].中国激光,2011,38(10):210-216. 被引量:7
  • 7G. Q. Zhang, X. J. Zhai, C. J. Zhu et al.. The silicon photomultiplier--a new detector for photon-number-resolving at room temperature [J]. Int. J. Quantum Information, 2012,10(3): 1230002. 被引量:1
  • 8K. T. Son, C. C. Lee, Y. Y. Shieh. Multiple-target laser range t4 finding receivers using silicon photomultiplier arrays [C]-. IEEE as!l Electronic Components and Technology Conference, 2009. 2131-2136 15. 被引量:1
  • 9田玉珍,赵帅,郭劲.非合作目标光子计数激光测距技术研究[J].光学学报,2011,31(5):138-145. 被引量:21
  • 10C. W. Helstrom. Computing the performance of optical receivers with avalanche photon diode detectors [J]. IEEE Trans. Commun., 1988, 36(1): 61-66. 被引量:1

二级参考文献39

  • 1李建龙,张丽娟,傅克祥,刘细成.一种新型的光束分束结构——复合调制型光栅[J].中国激光,2006,33(1):43-48. 被引量:2
  • 2赵栋,刘立人,王吉明,郎海涛,潘卫清,刘锡民.基于光子数目比较的激光测距法[J].光学学报,2006,26(7):1091-1096. 被引量:10
  • 3M. C. Amann, Thierry Bosch, Marc Lescure et al.. Laser ranging a critical review of usual techniques for distance measurement[J].Opt. Engng. , 2001, 40(1): 10-19. 被引量:1
  • 4Ari Kilpela, Riku Pennala, Juha Kostamovaara. Precise pulsed time-of-flight laser range finder for industrial distance measurements [J]. Review of Scientific Instrument, 2001, 72(4): 2197-2202. 被引量:1
  • 5H. Ailisto, V. Heikkinen, R. Mitikka et al.. Scannerless imaging pulsed-laser range finding [J]. Opt. A: Pure Appl. Opt. , 2002, 4:337-346. 被引量:1
  • 6J. S. Massa, A. M. Wallace, G. S. Buller et al. Laser depth measurement based on time-correlated single-photon counting[J].Opt. Lett. , 1997, 22(8): 543-545. 被引量:1
  • 7M. Umasuthan, A. M. Wallace, J. S. Massa. Processing time correlated single photon counting data to acquire range images [J]. IEE Image Signal Process, 1998, 145(4): 237-243. 被引量:1
  • 8John S. Massa, Gerald S. Buller, Andrew C. Walker. Time of flight optical ranging system based on time-correlated single photon counting[J].Appl. Opt. , 1998, 37(31) : 7298-7304. 被引量:1
  • 9Gerald S. Buller, Andrew M. Wallace. Ranging and three- dimensional imaging using time-correlated single photon counting and point by point acquisition [J].IEEE Quantum Electron. , 2007, 13(4): 1006-1015. 被引量:1
  • 10Min Seok Oh, Hong Jin Kong. An improvement on accuracy of laser radar using a Geiger-mode avalanche photodiode by time-offlight analysis with Poisson statistics [J]. Laser Radar Technology and Applications, 2010, 7684:76841-1-10. 被引量:1

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