论文标题

二维量子ISING模型中的界面动力学

Interface dynamics in the two-dimensional quantum Ising model

论文作者

Balducci, Federico, Gambassi, Andrea, Lerose, Alessio, Scardicchio, Antonello, Vanoni, Carlo

论文摘要

在最近的论文中[物理学。莱特牧师。 129,120601]我们已经证明,在二维铁磁量子iSing模型的对称性阶段中,接口的动力学显示出一种强大的牙齿破裂形式。在本文中,我们详细介绍了这个问题。首先,我们讨论了两类在平方晶格上的初始状态,其动力是由有效的哈密顿式互补术语驱动的,可以准确地解决:(a)连续的邻近旋转条沿周围旋转的相反方向对齐,(b)最初的状态与大量的“平滑界面”相对的“平滑界面”的表征,这是一个平滑的“相互互发”的表征。后者状态的演变可以映射到有效的一维费米子链上,该链可在无限耦合极限中集成。在这种情况下,具有值得注意的深度连接导致数学出现,以及经典统计物理学的类似问题。我们对这些接口的演变进行了详细的分析,无论是在晶格上还是在适当的连续性极限上,包括界面波动和纠缠熵的动力学。其次,我们提供了分析和数值证据,以支持这样一个结论,即观察到的非连接性 - 由于有效的效率激发的定位而引起的,远离了无限型偶联偶联的限制,并且我们强调了一个时间尺度$ t \ sim e^{c ln ln l} $ nimear size size y linl ul $ l $ l $ l $ l。还讨论了我们工作对虚假真空衰减的经典问题的含义。

In a recent paper [Phys. Rev. Lett. 129, 120601] we have shown that the dynamics of interfaces, in the symmetry-broken phase of the two-dimensional ferromagnetic quantum Ising model, displays a robust form of ergodicity breaking. In this paper, we elaborate more on the issue. First, we discuss two classes of initial states on the square lattice, the dynamics of which is driven by complementary terms in the effective Hamiltonian and may be solved exactly: (a) strips of consecutive neighbouring spins aligned in the opposite direction of the surrounding spins, and (b) a large class of initial states, characterized by the presence of a well-defined "smooth" interface separating two infinitely extended regions with oppositely aligned spins. The evolution of the latter states can be mapped onto that of an effective one-dimensional fermionic chain, which is integrable in the infinite-coupling limit. In this case, deep connections with noteworthy results in mathematics emerge, as well as with similar problems in classical statistical physics. We present a detailed analysis of the evolution of these interfaces both on the lattice and in a suitable continuum limit, including the interface fluctuations and the dynamics of entanglement entropy. Second, we provide analytical and numerical evidence supporting the conclusion that the observed non-ergodicity -- arising from Stark localization of the effective fermionic excitations -- persists away from the infinite-Ising-coupling limit, and we highlight the presence of a timescale $T\sim e^{c L\ln L}$ for the decay of a region of large linear size $L$. The implications of our work for the classic problem of the decay of a false vacuum are also discussed.

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