论文标题
实验性作弊敏感的量子弱硬币翻转
Experimental cheat-sensitive quantum weak coin flipping
论文作者
论文摘要
与现代通信网络一样,量子网络的安全将依赖于基于少数基本原则的复杂加密任务。虚弱的硬币翻转(WCF)是一种重要的原始性,允许两个不信任的政党在一个随机的位置同意,同时他们偏爱相反的结果。值得注意的是,对于量子WCF,可以原则上实现完美的信息理论安全性。在这里,我们克服了概念和实用问题,这些问题阻止了迄今为止的原始实验证明,并演示了量子资源如何提供作弊敏感性,每个方都可以发现作弊的对手,而诚实的政党永远不会受到批准。通过信息理论安全性,这种属性在经典上是不可传统的。我们的实验实现了最近提出的理论方案的精致,耐损失的版本,并利用了由自发参数下转换产生的预示的单个光子,这是一个精心优化的线性光学干涉仪,包括具有可变反射率和快速光学开关的验证步骤的线性光学干涉仪。我们的协议基准值的高值维持与几公里的电信光纤相对应的衰减。
As in modern communication networks, the security of quantum networks will rely on complex cryptographic tasks that are based on a handful of fundamental primitives. Weak coin flipping (WCF) is a significant such primitive which allows two mistrustful parties to agree on a random bit while they favor opposite outcomes. Remarkably, perfect information-theoretic security can be achieved in principle for quantum WCF. Here, we overcome conceptual and practical issues that have prevented the experimental demonstration of this primitive to date, and demonstrate how quantum resources can provide cheat sensitivity, whereby each party can detect a cheating opponent, and an honest party is never sanctioned. Such a property is not known to be classically achievable with information-theoretic security. Our experiment implements a refined, loss-tolerant version of a recently proposed theoretical protocol and exploits heralded single photons generated by spontaneous parametric down conversion, a carefully optimized linear optical interferometer including beam splitters with variable reflectivities and a fast optical switch for the verification step. High values of our protocol benchmarks are maintained for attenuation corresponding to several kilometers of telecom optical fiber.