论文标题

与简单测量的纠缠辅助量子通信

Entanglement-assisted quantum communication with simple measurements

论文作者

Piveteau, Amélie, Pauwels, Jef, Håkansson, Emil, Muhammad, Sadiq, Bourennane, Mohamed, Tavakoli, Armin

论文摘要

密集的编码是纠缠如何提高量子通信的开创性示例,从发送一点点到发送两个位。通过将单独的粒子投射到最大纠缠的基础上,这是可能的。我们在理论和实验中都研究了更一般的通信任务,并表明更简单的测量可以使强大甚至最佳的纠缠辅助量子沟通协议。仅使用部分钟状状态分析仪进行两个量子位,我们演示了无法使用两个经典交流的位点模拟的量子相关性。然后,我们表明存在一项建立且有意义的任务,基于最大纠缠的两分四分位状态,产品测量值足以满足最强的量子预测。我们的结果表明,在某些情况下,可以通过简单且可扩展的光学实验来收集纠缠量的力量。

Dense coding is the seminal example of how entanglement can boost qubit communication, from sending one bit to sending two bits. This is made possible by projecting separate particles onto a maximally entangled basis. We investigate more general communication tasks, in both theory and experiment, and show that simpler measurements enable strong and sometimes even optimal entanglement-assisted qubit communication protocols. Using only partial Bell state analysers for two qubits, we demonstrate quantum correlations that cannot be simulated with two bits of classical communication. Then, we show that there exists an established and operationally meaningful task for which product measurements are sufficient for the strongest possible quantum predictions based on a maximally entangled two-qubit state. Our results reveal that there are scenarios in which the power of entanglement in enhancing quantum communication can be harvested in simple and scalable optical experiments.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源