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Single-photon semiconductor photodiodes for distributed optical fiber sensors: state of the art and perspectives

机译:分布式光纤传感器的单光子半导体光电二极管:最新技术和观点

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Abstract: The extreme sensitivity and time resolution of Geiger-mode avalanche photodiodes (GM-APDs) have already been exploited for optical time domain reflectometry (OTDR). Better than 1 cm spatial resolution in Rayleigh scattering detection was demonstrated. Distributed and quasi-distributed optical fiber sensors can take advantage of the capabilities of GM-APDs. Extensive studies have recently disclosed the main characteristics and limitations of silicon devices, both commercially available and developmental. In this paper we report an analysis of the performance of these detectors. The main characteristics of GM-APDs of interest for distributed optical fiber sensors are briefly reviewed. Command electronics (active quenching) is then introduced. The detector timing performance sets the maximum spatial resolution in experiments employing OTDR techniques. We highlight that the achievable time resolution depends on the physics of the avalanche spreading over the device area. On the basis of these results, trade-off between the important parameters (quantum efficiency, time resolution, background noise, and afterpulsing effects) is considered. Finally, we show first results on Germanium devices, capable of single photon sensitivity at 1.3 and 1.5 $mu@m with sub-nanosecond time resolution. !43
机译:摘要:盖格模式雪崩光电二极管(GM-APD)的极端灵敏度和时间分辨率已被用于光学时域反射仪(OTDR)。在瑞利散射检测中证明了优于1 cm的空间分辨率。分布式和准分布式光纤传感器可以利用GM-APD的功能。最近,广泛的研究揭示了硅器件的主要特性和局限性,无论是市售的还是发展中的。在本文中,我们报告了对这些检测器性能的分析。简要介绍了分布式光纤传感器感兴趣的GM-APD的主要特性。然后引入指令电子(主动淬火)。在采用OTDR技术的实验中,检测器的定时性能设置了最大的空间分辨率。我们着重指出,可实现的时间分辨率取决于散布在设备区域上的雪崩的物理性质。根据这些结果,考虑了重要参数(量子效率,时间分辨率,背景噪声和后脉冲效应)之间的折衷。最后,我们在锗器件上显示了第一个结果,该器件能够在亚纳秒级的时间分辨率下以1.3和1.5μμm的速度实现单光子灵敏度。 !43

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