Carollo Angelo, Spagnolo Bernardo, Valenti Davide
Department of Physics and Chemistry, Group of Interdisciplinary Theoretical Physics, University of Palermo, Viale delle Scienze, Ed. 18, I-90128, Palermo, Italy.
Radiophysics Department, Lobachevsky State University of Nizhni Novgorod, 23 Gagarin Avenue, Nizhni, Novgorod, 603950, Russia.
Sci Rep. 2018 Jun 29;8(1):9852. doi: 10.1038/s41598-018-27362-9.
A novel approach based on the Uhlmann curvature is introduced for the investigation of non-equilibrium steady-state quantum phase transitions (NESS-QPTs). Equilibrium phase transitions fall invariably into two markedly non-overlapping categories: classical phase transitions and quantum phase transitions. NESS-QPTs offer a unique arena where such a distinction fades off. We propose a method to reveal and quantitatively assess the quantum character of such critical phenomena. We apply this tool to a paradigmatic class of lattice fermion systems with local reservoirs, characterised by Gaussian non-equilibrium steady states. The relations between the behaviour of the Uhlmann curvature, the divergence of the correlation length, the character of the criticality and the dissipative gap are demonstrated. We argue that this tool can shade light upon the nature of non equilibrium steady state criticality in particular with regard to the role played by quantum vs classical fluctuations.
引入了一种基于乌尔曼曲率的新方法来研究非平衡稳态量子相变(NESS-QPTs)。平衡相变总是分为两个明显不重叠的类别:经典相变和量子相变。NESS-QPTs提供了一个独特的领域,在这个领域中这种区别逐渐消失。我们提出了一种方法来揭示并定量评估此类临界现象的量子特性。我们将此工具应用于一类具有局部库的晶格费米子系统的典型案例,其特征为高斯非平衡稳态。展示了乌尔曼曲率的行为、关联长度的发散、临界性的特征与耗散能隙之间的关系。我们认为,该工具可以阐明非平衡稳态临界性的本质,特别是关于量子涨落与经典涨落所起的作用。