论文标题
量子上下文提供了通信复杂性优势
Quantum contextuality provides communication complexity advantage
论文作者
论文摘要
尽管上下文在量子力学中具有概念上的重要性,但迄今为止,需要有限的应用程序需要上下文,但没有纠缠。在这里,我们表明,对于任何量子状态和可观察到足够小的维度产生上下文性的可观察到,存在具有量子优势的通信任务。相反,此任务中的任何量子优势都可以在附加条件保持时承认上下文的证明。我们进一步表明,鉴于允许量子状态无关的上下文性的任何一组可观察到的东西,存在一类通信任务,其中经典和量子通信复杂性之间的差异随着输入的数量的增加而增加。最后,我们展示了如何将这些通信任务转换为量子密钥分布的半设备独立的协议。
Despite the conceptual importance of contextuality in quantum mechanics, there is a hitherto limited number of applications requiring contextuality but not entanglement. Here, we show that for any quantum state and observables of sufficiently small dimensions producing contextuality, there exists a communication task with quantum advantage. Conversely, any quantum advantage in this task admits a proof of contextuality whenever an additional condition holds. We further show that given any set of observables allowing for quantum state-independent contextuality, there exists a class of communication tasks wherein the difference between classical and quantum communication complexities increases as the number of inputs grows. Finally, we show how to convert each of these communication tasks into a semi-device-independent protocol for quantum key distribution.