Sub-Geiger mode single-photon detector using a low-dark-current InGaAs avalanche photodiode

Y. Miyamoto, K. Tsujino, J. Kataoka, A. Tomita
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引用次数: 1

Abstract

We have developed a single-photon detector that uses an InGaAs avalanche photodiode (APD) operating in sub-Geiger mode. Sub-Geiger mode operation is a technique in which an APD is operated at a bias voltage that is lower than the breakdown voltage. This mode considerably reduces afterpulse probability, and single photons that arrive randomly can be detected. In the present study, we reduced the dark count rate of the sub-Geiger mode single-photon detector by using a low-dark-current InGaAs APD. Consequently, we obtained a dark count rate (DCR) of 5.6 counts per second (cps) with single-photon detection efficiency (SPDE) of 0.2%. Our single-photon detector is comparable in DCR to that of superconducting nanowire single-photon detectors.
采用低暗电流InGaAs雪崩光电二极管的亚盖革模式单光子探测器
我们开发了一种单光子探测器,它使用工作在亚盖革模式下的InGaAs雪崩光电二极管(APD)。亚盖革模式操作是一种APD在低于击穿电压的偏置电压下工作的技术。这种模式大大降低了后脉冲概率,并且可以检测到随机到达的单个光子。在本研究中,我们采用低暗电流InGaAs APD降低了亚盖革模式单光子探测器的暗计数率。因此,我们获得了5.6次/秒(cps)的暗计数率(DCR)和0.2%的单光子探测效率(SPDE)。我们的单光子探测器的DCR可与超导纳米线单光子探测器相媲美。
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