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InGaAs/InP single-photon detector with low noise, low timing jitter and high count rate

机译:具有低噪声,低时序抖动和高计数率的InGaAs / InP单光子检测器

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摘要

We present a new InGaAs/InP Single-Photon Avalanche Diode (SPAD) with high detection efficiency and low noise, which has been employed in a sinusoidal-gated setup to achieve very low afterpulsing probability and high count rate. The new InGaAs/InP SPAD has lower noise compared to previous generations thanks to the improvement of Zinc diffusion conditions and the optimization of the vertical structure. A detector with 25 μm active-area diameter, operated in gated-mode with ON time of tens of nanoseconds, has a dark count rate of few kilo-counts per second at 225 K and 5 V of excess bias, 30% photon detection efficiency at 1550 nm and a timing jitter of less than 90 ps (FWHM) at 7 V of excess bias. In order to reduce significantly the afterpulsing probability, these detectors were operated with a sinusoidal gate at 1.3 GHz. The extremely short gate ON time (less than 200 ps) reduces the charge flowing through the junction, thus reducing the number of trapped carriers and, eventually, lowering the afterpulsing probability. The resulting detection system achieves a maximum count rate higher than 650 Mcount/s with an afterpulsing probability of about 1.5%, a photon detection efficiency greater than 30% at 1550 nm and a temporal resolution of less than 90 ps (FWHM).
机译:我们提出了一种具有高检测效率和低噪声的新型InGaAs / InP单光子雪崩二极管(SPAD),该器件已用于正弦门控设置中,以实现极低的后脉冲概率和高计数率。与前几代产品相比,新型InGaAs / InP SPAD的噪声更低,这归功于锌扩散条件的改善和垂直结构的优化。有源区域直径为25μm的检测器,以门控模式工作,开启时间为数十纳秒,在225 K和5 V的过大偏压下具有每秒几千个计数的暗计数速率,光子检测效率为30%在1550 nm处产生7 V的偏压,在7 V的过大偏置下的时序抖动小于90 ps(FWHM)。为了显着降低后脉冲概率,这些检测器使用1.3 GHz的正弦门工作。极短的栅极导通时间(小于200 ps)减少了流经结的电荷,从而减少了被捕获的载流子的数量,并最终降低了后脉冲的可能性。所得的检测系统以约1.5%的后脉冲概率,在1550 nm处的光子检测效率大于30%以及时间分辨率小于90 ps(FWHM)的情况下,实现了最高计数率高于650 Mcount / s。

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