Various correlations in a Heisenberg XXZ spin chain both in thermal equilibrium and under the intrinsic decoherence
Jiang-Tao Cai, Ahmad Abliz, Shu-Shen Li

TL;DR
This study analyzes quantum correlations in a Heisenberg XXZ spin chain under various conditions, revealing how system parameters influence correlations in thermal equilibrium and with intrinsic decoherence.
Contribution
It provides analytical expressions and comparative analysis of correlations in a Heisenberg XXZ model considering external fields and decoherence effects, highlighting parameter impacts.
Findings
Anisotropy Jz is crucial at zero temperature in thermal equilibrium.
Correlations decrease with rising temperature.
System parameters like J and B significantly affect correlations.
Abstract
In this paper we discuss various correlations measured by the concurrence (C), classical correlation (CC), quantum discord (QD), and geometric measure of discord (GMD) in a two-qubit Heisenberg XXZ spin chain in the presence of external magnetic field and Dzyaloshinskii-Moriya (DM) anisotropic antisymmetric interaction. Based on the analytically derived expressions for the correlations for the cases of thermal equilibrium and the inclusion of intrinsic decoherence, we discuss and compare the effects of various system parameters on the correlations in different cases. The results show that the anisotropy Jz is considerably crucial for the correlations in thermal equilibrium at zero temperature limit but ineffective under the consideration of the intrinsic decoherence, and these quantities decrease as temperature T rises on the whole. Besides, J turned out to be constructive, but B be…
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