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Temporal Encoding to Reject Background Signals in a Low Complexity Photon Counting Communication Link

机译:时间编码以低复杂度光子计数通信链路拒绝背景信号

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摘要

Communicating information at the few photon level typically requires some complexity in the transmitter or receiver in order to operate in the presence of noise. This in turn incurs expense in the necessary spatial volume and power consumption of the system. In this work, we present a self-synchronised free-space optical communications system based on simple, compact and low power consumption semiconductor devices. A temporal encoding method, implemented using a gallium nitride micro-LED source and a silicon single photon avalanche photo-detector (SPAD), demonstrates data transmission at rates up to 100 kb/s for 8.25 pW received power, corresponding to 27 photons per bit. Furthermore, the signals can be decoded in the presence of both constant and modulated background noise at levels significantly exceeding the signal power. The system’s low power consumption and modest electronics requirements are demonstrated by employing it as a communications channel between two nano-satellite simulator systems.
机译:为了在存在噪声的情况下进行操作,通常在几个光子级别上进行信息通信需要发射机或接收机中的某些复杂性。反过来,这在系统的必要空间量和功耗上产生了费用。在这项工作中,我们提出了一种基于简单,紧凑和低功耗半导体器件的自同步自由空间光通信系统。使用氮化镓micro-LED源和硅单光子雪崩光电探测器(SPAD)实施的时间编码方法,证明了在8.25 pW接收功率下,数据传输速率高达100 kb / s,相当于每位27个光子。此外,可以在存在恒定和调制背景噪声的情况下,以明显超过信号功率的电平对信号进行解码。通过将该系统用作两个纳米卫星模拟器系统之间的通信通道,证明了该系统的低功耗和适度的电子要求。

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