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Quantum coherence of planar spin models with Dzyaloshinsky-Moriya interaction

机译:平面旋转模型与Dzyaloshinsky-Moriya相互作用的量子相干性

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摘要

The quantum coherence of one-dimensional planar spin models with Dzyaloshinsky-Moriya interaction is investigated. The anisotropic XY model, the isotropic XX model, and the transverse field model are studied in the large N limit using two qubit reduced density matrices and two point correlation functions. From our investigations we find that the coherence as measured using Jensen-Shannon divergence can be used to detect quantum phase transitions and quantum critical points. The derivative of coherence shows nonanalytic behavior at critical points, leading to the conclusion that these transitions are of second order. Further, we show that the presence of Dzyaloshinsky-Moriya coupling suppresses the phase transition due to residual ferromagnetism, which is caused by spin canting.
机译:采用Dzyaloshinsky-Moriya相互作用的一维平面旋转模型的量子相干性。 各向异性XY模型,各向同性XX模型和横场模型在大n限制中使用两个Qubit降低的密度矩阵和两个点相关函数研究。 根据我们的调查,我们发现,使用Jensen-Shannon分歧测量的相干性可用于检测量子相变和量子临界点。 连贯性的衍生物显示关键点的非分析行为,导致这些过渡是二阶的结论。 此外,我们表明,Dzyaloshinsky-Moriya偶联的存在抑制了由于残留的铁磁性引起的相变,这是由旋倾倾引起的。

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