论文标题

临界相关对二维量子渗透的影响

Effects of critical correlations on quantum percolation in two dimensions

论文作者

De Tomasi, Giuseppe, Hart, Oliver, Glittum, Cecilie, Castelnovo, Claudio

论文摘要

我们分析了经历经典相变的局部磁性自由度的量子粒子的不平衡动力学。具体而言,我们考虑了一个二维紧密结合模型,该模型与热平衡中经典旋转的背景相互作用,该模型会受到Ising相互作用的影响,并充当量子粒子的相关障碍。特别注意的是接近铁磁到帕拉马特转变的温度。为了捕获经典过渡的显着特征,即远程相关性的影响,我们专注于强耦合极限,其中可以将模型映射到Ising模型生成的自旋簇上的量子渗透问题。通过检查几个动力学探针,例如能级统计,逆参与率和波包动力学,我们提供了证据,表明经典相变可能会在某些能量的量子系统中引起定位定位转变。由于存在相关性的存在,例如抑制紧凑的局部本征态,我们还确定了进一步的重要特征。

We analyze the out-of-equilibrium dynamics of a quantum particle coupled to local magnetic degrees of freedom that undergo a classical phase transition. Specifically, we consider a two-dimensional tight-binding model that interacts with a background of classical spins in thermal equilibrium, which are subject to Ising interactions and act as emergent, correlated disorder for the quantum particle. Particular attention is devoted to temperatures close to the ferromagnet-to-paramagnet transition. To capture the salient features of the classical transition, namely the effects of long-range correlations, we focus on the strong coupling limit, in which the model can be mapped onto a quantum percolation problem on spin clusters generated by the Ising model. By inspecting several dynamical probes such as energy level statistics, inverse participation ratios, and wave-packet dynamics, we provide evidence that the classical phase transition might induce a delocalization-localization transition in the quantum system at certain energies. We also identify further important features due to the presence of Ising correlations, such as the suppression of compact localized eigenstates.

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