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On the passive probing of fiber optic quantum communication channels

机译:关于光纤量子通信通道的无源探测

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摘要

Avalanche photodetectors based on InGaAs:P are the most sensitive and only detectors operating in the telecommunication wavelength range 1.30-1.55 μm in the fiber optic quantum cryptography systems that can operate in the single photon count mode. In contrast to the widely used silicon photodetectors for wavelengths up to 1 μm operating in a waiting mode, these detectors always operate in a gated mode. The production of an electron-hole pair in the process of the absorption of a photon and the subsequent appearance of an avalanche of carriers can be accompanied by the inverse processes of the recombination and emission of photons. Such a backward emission can present a potential serious problem for the stability of fiber optic quantum cryptography systems against passive probing. The results of analyzing the detection of backscattered radiation are reported. The probability of such an emission has been estimated.
机译:基于InGaAs:P的雪崩光电探测器是最灵敏的探测器,并且在可以以单光子计数模式运行的光纤量子密码系统中,仅在电信波长范围1.30-1.55μm下运行。与在等待模式下工作的波长高达1μm的广泛使用的硅光电探测器相反,这些探测器始终在门控模式下工作。在吸收光子的过程中电子空穴对的产生以及随后的载流子雪崩的出现可能伴随着光子的重组和发射的逆过程。这样的向后发射对于光纤量子密码系统抵抗被动探测的稳定性可能提出潜在的严重问题。报告了对后向散射辐射的检测分析结果。已经估计了这种排放的可能性。

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