Impact of dephasing probes on incommensurate lattices

IF 2.2 3区 物理与天体物理 Q2 MECHANICS
Bishal Ghosh, Sandipan Mohanta, Manas Kulkarni, Bijay Kumar Agarwalla
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Abstract

We investigate open quantum dynamics for a one-dimensional incommensurate Aubry–André–Harper lattice chain, a part of which is initially filled with electrons and is further connected to dephasing probes at the filled lattice sites. This setup is akin to a step-initial configuration where the non-zero part of the step is subjected to dephasing. We investigate the quantum dynamics of local electron density, the scaling of the density front as a function of time both inside and outside of the initial step, and the growth of the total number of electrons outside the step. We analyze these quantities in all three regimes, namely, the de-localized, critical, and localized phases of the underlying lattice. Outside the initial step, we observe that the density front spreads according to the underlying nature of single-particle states of the lattice, for both the de-localized and critical phases. For the localized phase, the spread of the density front hints at a logarithmic behavior in time that has no parallel in the isolated case (i.e. in the absence of probes). Inside the initial step, due to the presence of the probes, the density front spreads in a diffusive manner for all the phases. This combination of rich and different dynamical behavior, outside and inside the initial step, results in the emergence of mixed dynamical phases. While the total occupation of electrons remains conserved, the value outside or inside the initial step turns out to have a rich dynamical behavior. Our work is widely adaptable and has interesting consequences when disordered/quasi-disordered systems are subjected to a thermodynamically large number of probes.
去相位探针对不对称晶格的影响
我们研究了一维不相容奥布里-安德烈-哈珀晶格链的开放量子动力学,该晶格链的一部分最初由电子填充,并进一步与填充晶格位点的去相探针相连。这种设置类似于阶跃初始构型,其中阶跃的非零部分受到去相作用。我们研究了局部电子密度的量子动力学、初始阶梯内外密度前沿随时间变化的缩放以及阶梯外电子总数的增长。我们在底层晶格的去局域、临界和局域三种状态下分析了这些量。我们观察到,在初始阶跃外,密度前沿会根据晶格单粒子态的基本性质进行扩散,包括去局域阶段和临界阶段。在局部阶段,密度前沿的扩散暗示了时间上的对数行为,而这种行为在孤立情况下(即在没有探测器的情况下)是不存在的。在初始阶段,由于探针的存在,密度前沿在所有阶段都以扩散的方式扩散。初始阶梯内外丰富而不同的动力学行为相结合,导致了混合动力学阶段的出现。虽然电子的总占有率保持不变,但初始阶梯内外的值却具有丰富的动力学行为。我们的工作具有广泛的适应性,当无序/准无序系统受到大量热力学探针的作用时,会产生有趣的结果。
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来源期刊
CiteScore
4.50
自引率
12.50%
发文量
210
审稿时长
1.0 months
期刊介绍: JSTAT is targeted to a broad community interested in different aspects of statistical physics, which are roughly defined by the fields represented in the conferences called ''Statistical Physics''. Submissions from experimentalists working on all the topics which have some ''connection to statistical physics are also strongly encouraged. The journal covers different topics which correspond to the following keyword sections. 1. Quantum statistical physics, condensed matter, integrable systems Scientific Directors: Eduardo Fradkin and Giuseppe Mussardo 2. Classical statistical mechanics, equilibrium and non-equilibrium Scientific Directors: David Mukamel, Matteo Marsili and Giuseppe Mussardo 3. Disordered systems, classical and quantum Scientific Directors: Eduardo Fradkin and Riccardo Zecchina 4. Interdisciplinary statistical mechanics Scientific Directors: Matteo Marsili and Riccardo Zecchina 5. Biological modelling and information Scientific Directors: Matteo Marsili, William Bialek and Riccardo Zecchina
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