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有限温度下自旋链中的量子关联与量子相变。

Quantum correlations in spin chains at finite temperatures and quantum phase transitions.

机构信息

Departamento de Física, Universidade Federal de São Carlos, São Carlos, SP 13565-905, Brazil.

出版信息

Phys Rev Lett. 2010 Aug 27;105(9):095702. doi: 10.1103/PhysRevLett.105.095702. Epub 2010 Aug 25.

Abstract

We compute the quantum correlation [quantum discord (QD)] and the entanglement (EOF) between nearest-neighbor qubits (spin-1/2) in an infinite chain described by the Heisenberg model (XXZ Hamiltonian) at finite temperatures. The chain is in the thermodynamic limit and thermalized with a reservoir at temperature T (canonical ensemble). We show that QD, in contrast to EOF and other thermodynamic quantities, spotlight the critical points associated with quantum phase transitions (QPT) for this model even at finite T. This remarkable property of QD may have important implications for experimental characterization of QPTs when one is unable to reach temperatures below which a QPT can be seen.

摘要

我们计算了在有限温度下由海森堡模型(XXZ 哈密顿量)描述的无限链中最近邻量子比特(自旋 1/2)之间的量子关联(量子失协 (QD))和纠缠(EOF)。该链处于热力学极限并与温度为 T 的储层热化(正则系综)。我们表明,与 EOF 和其他热力学量相比,QD 即使在有限温度下也突出了与量子相变 (QPT) 相关的临界点,这是该模型的特点。当无法达到可以观察到 QPT 的温度以下时,QD 的这一显著特性可能对实验表征 QPT 具有重要意义。

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