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Low-Noise Free-Running High-Rate Photon-Counting for Space Communication and Ranging

机译:低噪声自由运行的高速率光子计数,用于空间通信和测距

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We present performance data for low-noise free-running high-rate photon counting method for space optical communication and ranging. NASA GSFC is testing the performance of two types of novel photon-counting detectors 1) a 2×8 mercury cadmium telluride (HgCdTe) avalanche array made by DRS Inc., and a 2) a commercial 2880-element silicon avalanche photodiode (APD) array. We successfully measured real-time communication performance using both the 2 detected-photon threshold and logic AND-gate coincidence methods. Use of these methods allows mitigation of dark count, after-pulsing and background noise effects without using other method of Time Gating The HgCdTe APD array routinely demonstrated very high photon detection efficiencies (>50%) at near infrared wavelength. The commercial silicon APD array exhibited a fast output with rise times of 300 ps and pulse widths of 600 ps. On-chip individually filtered signals from the entire array were multiplexed onto a single fast output. NASA GSFC has tested both detectors for their potential application for space communications and ranging. We developed and compare their performances using both the 2 detected photon threshold and coincidence methods.
机译:我们提供用于空间光通信和测距的低噪声自由运行高速率光子计数方法的性能数据。 NASA GSFC正在测试两种新型光子计数检测器的性能:1)DRS Inc.制造的2×8碲化镉汞(HgCdTe)雪崩阵列,以及2)商用2880元素硅雪崩光电二极管(APD)数组。我们使用两种检测到的光子阈值和逻辑与门符合方法成功地测量了实时通信性能。这些方法的使用无需使用其他时间门控方法就可以减轻暗计数,后脉冲和背景噪声的影响。HgCdTe APD阵列通常在近红外波长下表现出很高的光子检测效率(> 50%)。商用硅APD阵列具有300 ps的上升时间和600 ps的脉冲宽度的快速输出。来自整个阵列的片上独立滤波信号被多路复用到单个快速输出上。 NASA GSFC已测试了这两种探测器在空间通信和测距中的潜在应用。我们使用两种检测到的光子阈值和重合方法开发并比较了它们的性能。

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