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首页> 外文期刊>Laser physics letters >Quantum coherence, uncertainty, nonlocal advantage of quantum coherence as indicators of quantum phase transition in the transverse Ising model
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Quantum coherence, uncertainty, nonlocal advantage of quantum coherence as indicators of quantum phase transition in the transverse Ising model

机译:量子相干,不确定度,量子相干的非局部优势作为横向于横向展示中量子相变的指标

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摘要

In this paper, we investigate the relation among local quantum coherence, quantum uncertainty, and the nonlocal advantage of quantum coherence based on skew information and quantum phase transition in the transverse Ising model by exploring the quantum renormalization group (QRG) method. The results reveal that the amount of the local quantum uncertainty is equal to the local quantum coherence corresponding to the local observable sigma(z) in the model, which can be generalized to a multipartite system. Moreover, the nonlocal advantage of quantum coherence is investigated, and we found that regardless of the value of the external magnet field and the number of QRG iterations, the quantum coherence of the subsystem was steerable, which is not only suitable for the two sites of the block, but also for the nearest-neighbor blocks in the long-ranged ferromagnetic phase. However, as the system becomes large enough, the quantum coherence of the subsystem is not steerable in the paramagnetic phase. Additionally, the QRG implementation of quantum coherence and uncertainty are effective and feasible to detect the quantum critical points associated with quantum phase transitions. We also make use of the QRG method to analyze the thermodynamic limit of the current model and the emergence of the nonanalytic and scaling behaviors of the nonlocal advantage of quantum coherence.
机译:在本文中,我们通过探索量子重整组(QRG)方法,研究了基于横向读取模型中的偏斜信息和量子相转变的量子相干性,量子不确定性和量子相干性的关系。结果表明,局部量子不确定性的量等于模型中局部可观察SIGMA(Z)对应的局部量子相干性,这可以广泛地传递给多脚石系统。此外,研究了量子相干性的非局部优点,并且我们发现,无论外部磁体场的值如何和QRG迭代的数量,子系统的量子相干性是可转向的,这不仅适用于两个站点块,但也用于长距离铁磁相中的最近邻块。然而,随着系统变得足够大的,子系统的量子相干在顺磁相中不可转向。另外,量子相干性和不确定性的QRG实现是有效的,并且可以检测与量子相变相关的量子临界点。我们还利用了QRG方法来分析了当前模型的热力学限制以及量子相干性非识别优点的非分析和缩放行为的出现。

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