论文标题
来自封闭系统相关功能的浴诱导密度曲线的实时扩展
Real-time broadening of bath-induced density profiles from closed-system correlation functions
论文作者
论文摘要
Lindblad主方程是打开量子系统的主要方法之一。尽管它已被广泛应用于凝结物质系统的背景下,以在长时间的限制下研究稳态的特性,但到达这种稳态的实际途径却吸引了较少的关注。在这里,我们研究了与单个Lindblad浴室局部耦合的自旋链的非平衡动力学,并分析了诱导磁化的运输特性。将典型性和平衡参数与随机揭开的结合,我们揭示了较弱的驾驶情况,即可以根据封闭系统中的相关函数来构建开放系统中的动力学,从而在有限时间建立了lindblad方法与线性响应理论之间的联系。通过这种方式,我们提供了一个特定的例子,即严格同意量子运输的封闭和开放方法。我们在各向同性点和易于轴方面的Spin-1/2 XXZ链上进行了数值证明,分别观察到超级延伸和扩散缩放。
The Lindblad master equation is one of the main approaches to open quantum systems. While it has been widely applied in the context of condensed matter systems to study properties of steady states in the limit of long times, the actual route to such steady states has attracted less attention yet. Here, we investigate the nonequilibrium dynamics of spin chains with a local coupling to a single Lindblad bath and analyze the transport properties of the induced magnetization. Combining typicality and equilibration arguments with stochastic unraveling, we unveil for the case of weak driving that the dynamics in the open system can be constructed on the basis of correlation functions in the closed system, which establishes a connection between the Lindblad approach and linear response theory at finite times. In this way, we provide a particular example where closed and open approaches to quantum transport agree strictly. We demonstrate this fact numerically for the spin-1/2 XXZ chain at the isotropic point and in the easy-axis regime, where superdiffusive and diffusive scaling is observed, respectively.