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Silicon single photon avalanche diodes: situation and prospect

机译:硅单光子雪崩二极管:情况与展望

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Photon counting was introduced and developed during four decades relying on Photomultiplier Tubes (PMT), but interesting alternatives are nowadays provided by solid-state single-photon microdetectors. In particular, Silicon Single-Photon Avalanche-Diodes (SPAD) attain remarkable basic performance, such as high photon detection efficiency over a broad spectral range up to 1 micron wavelength, low dark counting rate and photon timing jitter of a few tens of picoseconds. In recent years SPADs have emerged from the laboratory research phase and they are now commercially available from various manufactures. However, PMTs have much wider sensitive area, which greatly simplifies the design of optical systems; they attain remarkable performance at high counting rate and can provide position-sensitive photon detection and imaging capability. In order to make SPADs more competitive in a broader range of applications it is necessary to face issues in semiconductor device technology. The present state of the art, the prospect and main issues will be discussed.
机译:在依赖于光电倍增管(PMT)的四十年期间引入并开发了光子计数,但现在通过固态单光子微探测器提供了有趣的替代方案。特别地,硅单光子雪崩二极管(SPAD)可实现显着的基本性能,例如高光谱范围内的高光子检测效率,高达1微米波长,低暗计数率和几十微米秒的光子正时抖动。近年来,从实验室研究阶段出现了Spad,他们现在可以从各种制造商商购获得。然而,PMTS具有更广泛的敏感区域,极大地简化了光学系统的设计;它们以高计数率实现了显着性能,可以提供位置敏感的光子检测和成像能力。为了使SPAD在更广泛的应用范围内更具竞争力,需要面对半导体器件技术的问题。本领域的现状,将讨论前景和主要问题。

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