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Bipartite entanglement in the spin-1/2 Ising-Heisenberg planar lattice constituted of identical trigonal bipyramidal plaquettes

机译:旋转1/2 ising-heisenberg平面缠绕平面缠结的平面缠结,由相同的Trigonal双滤板斑块构成

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The bipartite entanglement is rigorously examined in the spin-1/2 Ising-Heisenberg planar lattice composed of identical inter-connected bipyramidal plaquettes at zero and finite temperatures using the quantity called concurrence. It is shown that the Heisenberg spins of the same plaquette are twice stronger entangled in the two-fold degenerate quantum ground state than in the macroscopically degenerate quantum chiral one. The bipartite entanglement with chiral features completely disappears below or exactly at the critical temperature of the model, while that with no chirality may survive even above the critical temperature of the model. Non-monotonous temperature variations of the concurrence clearly evidence the activation of the entangled Heisenberg states also above classical ground state as well as their re-appearance above the critical temperature of the model. (C) 2020 Elsevier B.V. All rights reserved.
机译:在Zero-1/2 ising-Heisenberg平面晶格中严格检查二分纠缠,其由零和有限温度的相同连接的相互连接的双滤网斑块组成,使用称为并发的数量。 结果表明,相同斑块的海森伯格旋转的旋转两倍于两倍退化量子地面缠结,而不是在宏观上退化量子手术中缠结。 具有手性特征的双链缠结完全消失在模型的临界温度以下或恰好处于临界温度,而在模型的临界温度甚至没有手性的情况下可能会存活。 同时的非单调温度变化明确证明纠缠的海森伯格国家的激活也高于经典的地面状态,以及其重新出现在模型的临界温度之上。 (c)2020 Elsevier B.v.保留所有权利。

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