Khalid Uman, Ur Rehman Junaid, Shin Hyundong
Department of Electronic Engineering, Kyung Hee University, Yongin-si, 17104, Korea.
Sci Rep. 2020 Feb 12;10(1):2443. doi: 10.1038/s41598-020-59220-y.
Measurement-based quantum correlations (MbQCs) depend on how strongly an observer perturbs the unobserved system. This distinctive property differentiates MbQCs from traditional quantum correlations such as entanglement and discord. We utilize MbQCs to elucidate quantum information processing capabilities in quantum computation and quantum state discrimination. We show that MbQCs exist more generally than entanglement and discord in optimal assisted quantum state discrimination and in a deterministic quantum computation with a single qubit. We also propose an MbQC-based dimension witness and analyze it in different noisy and noiseless scenarios.
基于测量的量子关联(MbQCs)取决于观察者对未观测系统的扰动强度。这一独特性质使MbQCs有别于诸如纠缠和量子失协等传统量子关联。我们利用MbQCs来阐明量子计算和量子态判别中的量子信息处理能力。我们表明,在最优辅助量子态判别和单量子比特确定性量子计算中,MbQCs比纠缠和量子失协更为普遍地存在。我们还提出了一种基于MbQC的维度见证,并在不同的有噪和无噪情形下对其进行分析。