English

The $n$-th decay rate of coherence for Bell-diagonal states under quantum channels

Quantum Physics 2020-09-04 v1

Abstract

We study the degree to which the coherence of quantum states is affected by noise. We give the definition of the nn-th decay rate and investigate the coherence of Bell-diagonal states under nn iterations of channels. We derive explicit formulas of the nn-th decay rates based on l1l_1 norm of coherence, relative entropy of coherence and skew information-based coherence. It is found that the larger nn is, the faster the nn-th decay rate decreases as the parameter pp of Bell-diagonal states increases. Moreover, for any fixed nn, with the increase of pp, Bell-diagonal states can be completely incoherent under generalized amplitude damping (GAD) channels, depolarization (DEP) channels and phase flip (PF) channels, while this is not the case for bit flip (BF) channels and bit-phase flip (BPF) channels. We also investigate the geometry of the relative entropy of coherence and skew information-based coherence of Bell-diagonal states under different channels when the nn-th decay rate is one, i.e., the coherence is frozen. It is shown that compared with BF and BPF channels, when nn is large enough, the coherence of Bell-diagonal states will not be frozen under GAD, DEP and PF channels. For skew information-based coherence, similar properties of coherence freezing are found.

Keywords

Cite

@article{arxiv.2009.01503,
  title  = {The $n$-th decay rate of coherence for Bell-diagonal states under quantum channels},
  author = {Huaijing Huang and Zhaoqi Wu and Shao-Ming Fei},
  journal= {arXiv preprint arXiv:2009.01503},
  year   = {2020}
}