Robust thermal quantum correlation and quantum phase transition of spin system on fractal lattices

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作者
Yu-Liang Xu
Xin Zhang
Zhong-Qiang Liu
Xiang-Mu Kong
Ting-Qi Ren
机构
[1] Qufu Normal University,Shandong Provincial Key Laboratory of Laser Polarization and Information Technology, Department of Physics
[2] Binzhou University,Department of Optoelectronic Engineering
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Solid State and Materials;
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摘要
We investigate the quantum correlation measured by quantum discord (QD) for thermalized ferromagnetic Heisenberg spin systems in one-dimensional chains and on fractal lattices using the decimation renormalization group approach. It is found that the QD between two non-nearest-neighbor end spins exhibits some interesting behaviors which depend on the anisotropic parameter Δ, the temperature T, and the size of system L. With increasing Δ continuously, the QD possesses a cuspate change at Δ = 0 which is a critical point of quantum phase transition (QPT). There presents the “regrowth” tendency of QD with increasing T at Δ < 0, in contrast to the “growth” of QD at Δ > 0. As the size of the system L becomes large, there still exists considerable thermal QD between long-distance end sites in spin chains and on the fractal lattices even at unentangled states, and the long-distance QD can spotlight the presence of QPT. The robustness of QD on the diamond-type hierarchical lattices is stronger than that in spin chains and Koch curves, which indicates that the fractal can affect the behaviors of quantum correlation.
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