Institute of Photonics & Quantum Sciences, and the Scottish Universities Physics Alliance, David Brewster Building, Gait 2, Heriot-Watt University, Edinburgh, EH14 4AS, United Kingdom.
Quantum ICT Laboratory, National Institute of Information and Communications Technology (NICT), 4-2-1 Nukui Kitamachi, Koganei, Tokyo, 184-8795, Japan.
Sci Rep. 2017 Jun 12;7(1):3235. doi: 10.1038/s41598-017-03401-9.
Ensuring the integrity and transferability of digital messages is an important challenge in modern communications. Although purely mathematical approaches exist, they usually rely on the computational complexity of certain functions, in which case there is no guarantee of long-term security. Alternatively, quantum digital signatures offer security guaranteed by the physical laws of quantum mechanics. Prior experimental demonstrations of quantum digital signatures in optical fiber have typically been limited to operation over short distances and/or operated in a laboratory environment. Here we report the experimental transmission of quantum digital signatures over channel losses of up to 42.8 ± 1.2 dB in a link comprised of 90 km of installed fiber with additional optical attenuation introduced to simulate longer distances. The channel loss of 42.8 ± 1.2 dB corresponds to an equivalent distance of 134.2 ± 3.8 km and this represents the longest effective distance and highest channel loss that quantum digital signatures have been shown to operate over to date. Our theoretical model indicates that this represents close to the maximum possible channel attenuation for this quantum digital signature protocol, defined as the loss for which the signal rate is comparable to the dark count rate of the detectors.
确保数字消息的完整性和可转移性是现代通信中的一个重要挑战。虽然存在纯粹的数学方法,但它们通常依赖于某些函数的计算复杂性,在这种情况下,无法保证长期的安全性。或者,量子数字签名提供了由量子力学的物理定律保证的安全性。以前在光纤中进行的量子数字签名的实验演示通常仅限于短距离操作和/或在实验室环境中操作。在这里,我们报告了在由 90 公里的已安装光纤组成的链路中,通过引入额外的光衰减来模拟更长的距离,对量子数字签名的传输实验,该链路的信道损耗高达 42.8±1.2dB。42.8±1.2dB 的信道损耗相当于等效距离为 134.2±3.8km,这代表了迄今为止量子数字签名运行的最长有效距离和最高信道损耗。我们的理论模型表明,这代表了该量子数字签名协议的最大可能信道衰减,定义为信号速率与探测器的暗计数率相当的损耗。