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首页> 外文期刊>Physical review, B >Validity of mean-field theory in a dissipative critical system: Liouvillian gap, PT-symmetric antigap, and permutational symmetry in the XYZ model
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Validity of mean-field theory in a dissipative critical system: Liouvillian gap, PT-symmetric antigap, and permutational symmetry in the XYZ model

机译:耗散关键系统中平均场地理论的有效性:XYZ模型中的Liouvillian间隙,Pt对称抗药和牵手对称

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摘要

We study the all-to-all connected XYZ (anisotropic-Heisenberg) spin model with local and collective dissipations, comparing the results of mean-field (MF) theory with the solution of the Lindblad master equation. Exploiting the weak PT symmetry of the model (referred to as Liouvillian PT symmetry), we efficiently calculate the Liouvillian gap, introducing the idea of an antigap, and we demonstrate the presence of a paramagnetic-to-ferromagnetic phase transition. Leveraging the permutational symmetry of the model [N. Shammah et al., Phys Rev. A 98, 063815 (2018)], we characterize criticality, finding exactly (up to numerical precision) the steady state for N up to N = 95 spins. We demonstrate that the MF theory correctly predicts the results in the thermodynamic limit in all regimes of parameters, and quantitatively describes the finite-size behavior in the small anisotropy regime. However, for an intermediate number of spins and for large anisotropy, we find a significant discrepancy between the results of the MF theory and those of the full quantum simulation. We also study other more experimentally accessible witnesses of the transition, which can be used for finite-size studies, namely, the bimodality coefficient and the angular-averaged susceptibility. In contrast to the bimodality coefficient, the angular-averaged susceptibility fails to capture the onset of the transition, in striking difference with respect to lower-dimensional studies. We also analyze the competition between local dissipative processes (which disentangle the spin system) and collective dissipative ones (generating entanglement). The nature of the phase transition is almost unaffected by the presence of these terms. Our results mark a stark difference with the common intuition that an all-to-all connected system should fall onto the mean-field solution also for intermediate number of spins.
机译:我们研究了具有本地和集体耗散的全面连接的XYZ(各向异性-Heisenberg)旋转模型,将平均场(MF)理论与Lindblad Master等式的解决方案的结果进行比较。利用该模型的弱PT对称性(称为Liouvillian PT对称性),我们有效地计算Liouvillian间隙,引入antigap的想法,我们展示了一个顺磁性到铁磁性的相变的存在。利用模型的牵重对称[n。 Shammah等人。,Phy Rev. A 98,063815(2018)],我们表征了临界性,确切地发现(最高的数值精度)N = 95旋转的稳态。我们表明,MF理论正确地预测中所有的参数制度热力学极限的结果,定量地描述在各向异性小政权的有限尺寸行为。然而,对于旋转的中间数和大部分,我们在MF理论的结果和全量子模拟的结果之间发现了显着的差异。我们还研究了其他更具实验可访问的过渡证人,可用于有限尺寸的研究,即双极性系数和角平均易感性。与双极性系数相比,角平均易感性未能捕获转变的开始,相对于下维研究的引人注目差异。我们还分析了局部耗散过程(解散旋转系统)和集体耗散的竞争(产生纠缠)。相变的性质几乎不受这些术语存在的影响。我们的结果标志着与所有连接系统应落到平均旋转的平均旋转的常用直觉的常见直觉差异。

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  • 来源
    《Physical review, B 》 |2020年第21期| 共21页
  • 作者单位

    Univ Antwerp Theory Quantum &

    Complex Syst B-2610 Antwerp Belgium;

    RIKEN Cluster Pioneering Res Theoret Quantum Phys Lab Wako Saitama 3510198 Japan;

    RIKEN Cluster Pioneering Res Theoret Quantum Phys Lab Wako Saitama 3510198 Japan;

    Univ Antwerp Theory Quantum &

    Complex Syst B-2610 Antwerp Belgium;

    RIKEN Cluster Pioneering Res Theoret Quantum Phys Lab Wako Saitama 3510198 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学 ;
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