Challenges in Open-air Microwave Quantum Communication and Sensing

M. Sanz, K. Fedorov, F. Deppe, E. Solano
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引用次数: 23

Abstract

Quantum communication is a holy grail to achieve secure communication among a set of partners, since it is provably unbreakable by physical laws. Quantum sensing employs quantum entanglement as an extra resource to determine parameters by either using less resources or attaining a precision unachievable in classical protocols. A paradigmatic example is the quantum radar, which allows one to detect an object without being detected oneself, by making use of the additional asset provided by quantum entanglement to reduce the intensity of the signal. In the optical regime, impressive technological advances have been reached in the last years, such as the first quantum communication between ground and satellites, as well as the first proof-of-principle experiments in quantum sensing. The development of microwave quantum technologies turned out, nonetheless, to be more challenging. Here, we will discuss the challenges regarding the use of microwaves for quantum communication and sensing. Based on this analysis, we propose a roadmap to achieve real-life applications in these fields.
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露天微波量子通信与传感的挑战
量子通信是在一组伙伴之间实现安全通信的圣杯,因为它可以被物理定律证明是不可破坏的。量子传感利用量子纠缠作为额外的资源来确定参数,既可以使用更少的资源,也可以达到经典协议无法实现的精度。一个典型的例子是量子雷达,它通过利用量子纠缠提供的额外资产来降低信号强度,从而允许一个人在不被探测到的情况下探测到一个物体。在光学领域,过去几年取得了令人印象深刻的技术进步,例如地面和卫星之间的第一次量子通信,以及量子传感领域的第一次原理验证实验。然而,微波量子技术的发展更具挑战性。在这里,我们将讨论使用微波进行量子通信和传感的挑战。基于此分析,我们提出了在这些领域实现实际应用的路线图。
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