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1微米以上的单光子探测:市售锗光电二极管的性能

Single-photon detection beyond 1 µm: performance of commercially available germanium photodiodes.

作者信息

Lacaita A, Francese P A, Zappa F, Cova S

出版信息

Appl Opt. 1994 Oct 20;33(30):6902-18. doi: 10.1364/AO.33.006902.

Abstract

Germanium avalanche photodiodes (APD's) working biased above the breakdown voltage detect single optical photons in the near-infrared wavelength range. We give guidelines for the selection of devices suitable for photon-counting applications among the commercial samples, and we discuss in detail how the devices should be operated to achieve the best performance, both in terms of noise-equivalent power (NEP) and the timing-equivalent bandwidth. We introduce the driving electronics and we show that, in the measurements of fast optical signals, the adoption of single-photon techniques is very favorable, notwithstanding that presently available photodiodes are not designed for this purpose. On the contrary, in the detection of cw signals, the lower NEP values achieved in photon counting may not be sufficient to justify the replacement of conventional analog p-i-n germanium detectors, which offer comparable performance with a definitely larger sensitive area. Finally, we show that, by properly choosing theoperating conditions, some selected APD's achieve an 85-ps time resolution in the detection of optical photons at a 1.3-µm wavelength, which corresponds to a timing-equivalent bandwidth of 1.8 GHz. To the best of our knowledge, this time resolution is the lowest reported to date for single-photon detectors in the near infrared.

摘要

工作在击穿电压以上的锗雪崩光电二极管(APD)可在近红外波长范围内探测单个光学光子。我们给出了在商业样品中选择适用于光子计数应用的器件的指导原则,并详细讨论了如何操作这些器件以实现最佳性能,包括噪声等效功率(NEP)和定时等效带宽方面。我们介绍了驱动电子设备,并表明,在快速光信号的测量中,尽管目前可用的光电二极管并非为此目的而设计,但采用单光子技术非常有利。相反,在连续波信号的检测中,光子计数所实现的较低NEP值可能不足以证明取代传统的模拟p-i-n锗探测器是合理的,传统探测器具有相当的性能且敏感面积肯定更大。最后,我们表明,通过适当选择工作条件,一些选定的APD在探测1.3μm波长的光学光子时可实现85皮秒的时间分辨率,这对应于1.8GHz的定时等效带宽。据我们所知,这一时间分辨率是迄今为止近红外单光子探测器所报道的最低值。

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