Department of Computer Science, The University of Hong Kong, Pokfulam Road, Hong Kong 999077, China and HKU Shenzhen Institute of Research and Innovation, Yuexing 2nd Rd Nanshan, Shenzhen 518057, China.
Department of Computer Science, University of Oxford, Wolfson Building, Parks Road, Oxford OX1 3QD, United Kingdom and CIFAR Program in Quantum Information Science, Canadian Institute for Advanced Research, Toronto, Ontario ON M5G 1Z8, Canada.
Phys Rev Lett. 2018 Apr 13;120(15):150502. doi: 10.1103/PhysRevLett.120.150502.
Quantum benchmarks are routinely used to validate the experimental demonstration of quantum information protocols. Many relevant protocols, however, involve an infinite set of input states, of which only a finite subset can be used to test the quality of the implementation. This is a problem, because the benchmark for the finitely many states used in the test can be higher than the original benchmark calculated for infinitely many states. This situation arises in the teleportation and storage of coherent states, for which the benchmark of 50% fidelity is commonly used in experiments, although finite sets of coherent states normally lead to higher benchmarks. Here, we show that the average fidelity over all coherent states can be indirectly probed with a single setup, requiring only two-mode squeezing, a 50-50 beam splitter, and homodyne detection. Our setup enables a rigorous experimental validation of quantum teleportation, storage, amplification, attenuation, and purification of noisy coherent states. More generally, we prove that every quantum benchmark can be tested by preparing a single entangled state and measuring a single observable.
量子基准通常用于验证量子信息协议的实验演示。然而,许多相关协议涉及无限集的输入态,其中只有有限的子集可用于测试实现的质量。这是一个问题,因为在测试中使用的有限数量的状态的基准可以高于为无限数量的状态计算的原始基准。这种情况出现在相干态的量子隐形传态和存储中,尽管有限的相干态集通常会导致更高的基准,但通常在实验中使用 50%保真度的基准。在这里,我们表明,通过单个设置可以间接地探测所有相干态的平均保真度,该设置仅需要双模压缩、50-50 分束器和同频检测。我们的设置能够对量子隐形传态、存储、放大、衰减和噪声相干态的纯化进行严格的实验验证。更一般地,我们证明通过制备单个纠缠态并测量单个可观测量,可以测试每个量子基准。