One-Way Deficit and Holevo Quantity of Generalized $n$-qubit Werner State
Abstract
Originated from the work extraction in quantum systems coupled to a heat bath, quantum deficit is a kind of significant quantum correlations like quantum entanglement. It links quantum thermodynamics with quantum information. We analytically calculate the one-way deficit of the generalized -qubit Werner state. We find that the one-way deficit increases as the mixing probability increases for any . For fixed , we observe that the one-way deficit increases as increases. For any , the maximum of one-way deficit is attained at . Furthermore, for large (), we prove that the curve of one-way deficit versus approaches to a straight line with slope . We also calculate the Holevo quantity for the generalized -qubit Werner state, and show that it is zero.
Keywords
Cite
@article{arxiv.2305.06097,
title = {One-Way Deficit and Holevo Quantity of Generalized $n$-qubit Werner State},
author = {Yao-Kun Wang and Rui-Xin Chen and Li-Zhu Ge and Shao-Ming Fei and Zhi-Xi Wang},
journal= {arXiv preprint arXiv:2305.06097},
year = {2023}
}
Comments
8 pages, 1 figure