English

Pairwise quantum discord for a symmetric multi-qubit system in different types of noisy channels

Quantum Physics 2016-02-17 v1

Abstract

We study the pairwise quantum discord (QD) for a symmetric multi-qubit system in different types of noisy channels, such as phase-flip, amplitude damping, phase-damping, and depolarizing channels. Using the QD and geometric measure of quantum discord (GMQD) to quantify quantum correlations, some analytical or numerical results are presented. The results show that, the dynamics of the pairwise QD is related to the number of spin particles NN as well as initial parameter θ\theta of the one-axis twisting collective state. With the number of spin particles NN increasing, the amount of the pairwise QD increases. However, when the amount of the pairwise QD arrives at a stable maximal value, the pairwise QD is independence of the number of spin particles NN increasing. The behavior of the pairwise QD is symmetrical during a period 0θ2π0\leq \theta \leq 2\pi. Moreover, we compare the pairwise QD dynamics with the GMQD for a symmetric multi-qubit system in different types of noisy channels.

Keywords

Cite

@article{arxiv.1507.04826,
  title  = {Pairwise quantum discord for a symmetric multi-qubit system in different types of noisy channels},
  author = {You-neng Guo and Mao-fa Fang and Zeng Ke and Guo-you Wang},
  journal= {arXiv preprint arXiv:1507.04826},
  year   = {2016}
}

Comments

8 pages, 12 figures