Optimal tests for continuous-variable quantum teleportation and photodetectors

Kunal Sharma, B. Sanders, M. Wilde
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引用次数: 8

Abstract

Quantum teleportation is a primitive in several important applications, including quantum communication, quantum computation, error correction, and quantum networks. In this work, we propose an optimal test for the performance of continuous-variable (CV) quantum teleportation in terms of the energy-constrained channel fidelity between ideal CV teleportation and its experimental implementation. All work prior to ours considered suboptimal tests of the performance of CV teleportation, focusing instead on its performance for particular states, such as ensembles of coherent states, squeezed states, cat states, etc. Here we prove that the optimal state for testing CV teleportation is an entangled superposition of twin-Fock states. We establish this result by reducing the problem of estimating the energy-constrained channel fidelity between ideal CV teleportation and its experimental approximation to a quadratic program and solving it. As an additional result, we obtain an analytical solution to the energy-constrained diamond distance between a photodetector and its experimental approximation. These results are relevant for experiments that make use of CV teleportation and photodetectors.
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连续变量量子隐形传态和光电探测器的最佳测试
量子隐形传态是几个重要应用的基础,包括量子通信、量子计算、纠错和量子网络。在这项工作中,我们根据理想CV隐形传态与其实验实现之间的能量约束信道保真度,提出了连续变量(CV)量子隐形传态性能的最佳测试。在我们之前的所有工作都考虑了CV隐形传态性能的次优测试,而是关注其在特定状态下的性能,例如相干状态的集合,压缩状态,cat状态等。本文证明了测试CV隐形传态的最佳状态是双fock态的纠缠叠加态。我们通过将理想CV隐形传态与其实验近似之间的能量约束信道保真度估计问题简化为一个二次规划并求解该问题来建立这一结果。作为一个额外的结果,我们得到了光电探测器和它的实验近似之间的能量约束的钻石距离的解析解。这些结果对利用CV隐形传态和光电探测器的实验具有一定的指导意义。
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