Feng X N, Wei L F
State Key Laboratory of Optoelectronic Materials and Technologies, School of Physics, Sun Yat-Sen University, Guangzhou, 510275, China.
Information Quantum Technology Laboratory, School of Information Science and Technology, Southwest Jiaotong University, Chengdu, 610031, China.
Sci Rep. 2017 Nov 14;7(1):15492. doi: 10.1038/s41598-017-15323-7.
Quantum coherence is one of the old but always important concepts in quantum mechanics, and now it has been regarded as a necessary resource for quantum information processing and quantum metrology. However, the question of how to quantify the quantum coherence has just been paid the attention recently (see, e.g., Baumgratz et al. PRL, 113. 140401 (2014)). In this paper we verify that the well-known quantum Fisher information (QFI) can be utilized to quantify the quantum coherence, as it satisfies the monotonicity under the typical incoherent operations and the convexity under the mixing of the quantum states. Differing from most of the pure axiomatic methods, quantifying quantum coherence by QFI could be experimentally testable, as the bound of the QFI is practically measurable. The validity of our proposal is specifically demonstrated with the typical phase-damping and depolarizing evolution processes of a generic single-qubit state, and also by comparing it with the other quantifying methods proposed previously.
量子相干是量子力学中一个古老但始终重要的概念,如今它已被视为量子信息处理和量子计量学的一种必要资源。然而,如何量化量子相干这个问题直到最近才受到关注(例如,见鲍姆格拉茨等人,《物理评论快报》,113, 140401 (2014))。在本文中,我们验证了著名的量子费舍尔信息(QFI)可用于量化量子相干,因为它在典型的非相干操作下满足单调性,并且在量子态混合下满足凸性。与大多数纯公理方法不同,用QFI量化量子相干可以通过实验进行检验,因为QFI的界限实际上是可测量的。我们的提议的有效性通过一个一般单比特态的典型相位阻尼和退极化演化过程具体展示出来,并且还通过将其与先前提出的其他量化方法进行比较得以体现。