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High-speed photon counting techniques for broadband quantum key distribution

机译:宽带量子密钥分布的高速光子计数技术

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Quantum Cryptography has demonstrated the potential for ultra-secure communications. However, with quantumchannel transmission rates in the MHz range, typical link losses and signal-to-noise ratios have resulted in keyproduction rates that are impractical for continuous one-time-pad encryption of high-bandwidth communications. We have developed high-speed data handling electronics that support quantum-channel transmission rates up to 1.25 GHz. This system has demonstrated error-corrected and privacy-amplified key rates above 1 Mbps over a free-space link. While the transmission rate is ultimately limited by timing jitter in the single-photon avalanche photodiodes (SPADs), we find the timing resolution of silicon SPADs sufficient to operate efficiently with temporal gates as short as 100 ps. We have developed systems to implement such high-resolution gating in our system, and anticipate the attendant reduction in noise to produce significantly higher secret-key bitrates.
机译:量子加密已经证明了超安全通信的可能性。然而,在MHz范围内的量子通道传输速率,典型的链路损耗和信噪比已经导致对高带宽通信的连续一次性焊盘加密是不切实际的重点计算速率。我们开发了高速数据处理电子设备,支持高达1.25 GHz的量子通道传输速率。该系统在自由空间链路上显示出超过1 Mbps的纠错和隐私放大的密钥率。虽然传输速率​​最终受到单光子雪崩光电二极管(SPAD)中的时序抖动的限制,但是我们发现足以以高达100ps的时间栅极有效地操作的硅片的定时分辨率。我们开发了在我们的系统中实施此类高分辨率门控的系统,并期望噪声减少的响伴者减少,以产生显着更高的秘密密钥比特率。

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