Porta Sergio, Cavaliere Fabio, Sassetti Maura, Traverso Ziani Niccolò
Dipartimento di Fisica, Università di Genova, 16146, Genova, Italy.
SPIN-CNR, 16146, Genova, Italy.
Sci Rep. 2020 Jul 29;10(1):12766. doi: 10.1038/s41598-020-69621-8.
Understanding the properties of far-from-equilibrium quantum systems is becoming a major challenge of both fundamental and applied physics. For instance, the lack of thermalization in integrable and (many body) localized systems provides new insights in the understanding of the relaxation dynamics of quantum phases. On a more applicative side, the possibility of exploiting the properties of far-from-equilibrium states, for example in pump-probe experiments, opens unprecedented scenarios. The effort in providing a classification of far-from-equilibrium phases, in terms of local or topological order parameters, is hence intense. In this context, the concept of Dynamical Quantum Phase Transition (DQPT) has been introduced. A DQPT is (roughly) defined as a zero of the Loschmidt-Echo as a function of time and represents a natural non-equilibrium counterpart of a thermal phase transition. Here, we investigate the DQPTs occurring in the quantum xy chain subject to a quantum quench of finite duration. We show that the number of distinct DQPTs can vary as the duration of the quantum quench is varied. However, the parity of such number only depends on the pre-quench and post-quench Hamiltonians and is related to a topological invariant.
理解远离平衡态量子系统的性质正成为基础物理学和应用物理学的一项重大挑战。例如,可积系统和(多体)局域化系统中缺乏热化现象,为理解量子相的弛豫动力学提供了新的见解。在更具应用性的方面,利用远离平衡态的性质,例如在泵浦 - 探测实验中的可能性,开启了前所未有的场景。因此,人们正致力于根据局部或拓扑序参量对远离平衡相进行分类。在这种背景下,引入了动态量子相变(DQPT)的概念。DQPT(大致)定义为作为时间函数的洛施密特回波的零点,并且代表热相变的自然非平衡对应物。在这里,我们研究了在经受有限持续时间量子猝灭的量子xy链中发生的DQPT。我们表明,随着量子猝灭持续时间的变化,不同DQPT的数量可能会改变。然而,该数量的奇偶性仅取决于猝灭前和猝灭后的哈密顿量,并且与一个拓扑不变量有关。