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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Robust thermal quantum correlation and quantum phase transition of spin system on fractal lattices
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Robust thermal quantum correlation and quantum phase transition of spin system on fractal lattices

机译:分形晶格上自旋系统的鲁棒热量子相关性和量子相变

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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.
机译:我们使用抽取重整化群方法研究了一维链和分形晶格中热铁磁海森堡自旋系统的量子不平衡(QD)测量的量子相关性。发现两个非近邻端自旋之间的QD表现出一些有趣的行为,这些行为取决于各向异性参数Δ,温度T和系统L的大小。随着Δ的不断增加,QD在80°C处具有尖锐的变化。 Δ= 0,这是量子相变(QPT)的临界点。与Δ> 0时QD的“增长”相反,当Δ<0时T随着Q的增加而呈现QD的“增长”趋势。随着系统L的尺寸变大,在长的即使在非纠缠状态下,自旋链中的远距离末端位点和分形晶格上的远距离末端位点,长距离QD可以突显QPT的存在。 QD在钻石型分层晶格上的鲁棒性强于自旋链和Koch曲线,这表明分形可以影响量子相关性的行为。

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