4.5 Article

Thermal quantum coherence and correlation in the extended XY spin chain

Journal

ANNALS OF PHYSICS
Volume 392, Issue -, Pages 229-241

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.aop.2018.03.015

Keywords

Quantum coherence; Quantum correlation; Quantum phase transition; Factorization; Finite temperature

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Quantum coherence and correlation of thermal states in the extended XY spin chain are studied in terms of the recently proposed 11 norm, skew information, and Bures distance of geometry discord (BGD), respectively. The entanglement measured via concurrence is calculated for reference. A two-dimensional susceptibility is introduced to explore their capability in highlighting the critical lines associated with quantum phase transitions in the model. It is shown that the susceptibility of the skew information and BGD is a genuine indicator of quantum phase transitions, and characterizes the factorization. However, the 11 norm is trivial for the factorization. An explicit scaling law of BGD is captured at low temperature in the XY model. In contrast to the entanglement, quantum coherence reveals a kind of long-range nonclassical correlation. Moreover, the obvious relation among model parameters is extracted for the factorized line in the extended model. Those are instructive for the understanding of quantum coherence and correlation in the theory of quantum information, and quantum phase transitions and factorization in condensed-matter physics. (C) 2018 Elsevier Inc. All rights reserved.

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