论文标题
使用量子纠缠的概率一次性程序
Probabilistic one-time programs using quantum entanglement
论文作者
论文摘要
众所周知,量子技术允许为量子计算机以及量子辅助的古典计算机提供前所未有的数据和软件保护。为了利用这些属性,已经开发了概率的一次性程序,在小量子状态下,在小量子状态中编码古典软件启用只能使用一次的计算机程序。这种自我毁灭的一次性计划促进了从软件分发到一次性签名授权委派的各种新应用程序。虽然首先原则实验证明了此类方案的可行性,但由于需要使用该软件与技术挑战相结合,因此实际应用受到限制,因为需要进行主动的光学切换和大量的古典交流。在这里,我们为一次性程序提供了改进的协议,该计划通过采用纠缠量子对来解决以前方案的主要缺点。这导致四个数量级的计数率以及在量子信息交换发生后很长时间执行程序的能力。我们在维也纳市中心的大学建筑物之间的地下纤维连接上展示了我们的协议。最后,加上我们实施签名权威的一次性委派,这强调了我们计划与准备和衡量量子互联网网络的兼容性。
It is well known that quantum technology allows for an unprecedented level of data and software protection for quantum computers as well as for quantum-assisted classical computers. To exploit these properties, probabilistic one-time programs have been developed, where the encoding of classical software in small quantum states enables computer programs that can be used only once. Such self-destructing one-time programs facilitate a variety of new applications reaching from software distribution to one-time delegation of signature authority. Whereas first proof-of-principle experiments demonstrated the feasibility of such schemes, the practical applications were limited due to the requirement of using the software on-the-fly combined with technological challenges due to the need for active optical switching and a large amount of classical communication. Here we present an improved protocol for one-time programs that resolves major drawbacks of previous schemes, by employing entangled qubit pairs. This results in four orders of magnitude higher count rates as well the ability to execute a program long after the quantum information exchange has taken place. We demonstrate our protocol over an underground fiber link between university buildings in downtown Vienna. Finally, together with our implementation of a one-time delegation of signature authority this emphasizes the compatibility of our scheme with prepare-and-measure quantum internet networks.