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Exact methods in the analysis of the non-equilibrium dynamics of integrable models: application to the study of correlation functions for non-equilibrium 1D Bose gas

机译:可积分模型非平衡动力学分析的精确方法:在非平衡一维玻色气体相关函数研究中的应用

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摘要

In this paper we study the non-equilibrium dynamics of one-dimensional Bose gas from the general perspective of the dynamics of integrable systems. After outlining and critically reviewing methods based on the inverse scattering transform, intertwining operators, q-deformed objects, and extended dynamical conformal symmetry, we focus on the form-factor based approach. Motivated by possible applications in nonlinear quantum optics and experiments with ultracold atoms, we concentrate on the regime of strong repulsive interactions. We consider dynamical evolution starting from two initial states: a condensate of particles in a state with zero momentum and a condensate of particles in a Gaussian wavepacket in real space. Combining the form-factor approach with the method of intertwining operators we develop a numerical procedure which allows explicit summation over intermediate states and analysis of the time evolution of non-local density–density correlation functions. In both cases we observe a tendency toward the formation of crystal-like correlations at intermediate timescales.
机译:本文从可积系统动力学的一般角度研究了一维玻色气体的非平衡动力学。在概述并严格审查了基于逆散射变换,纠缠算子,q变形对象和扩展的动态保形对称性的方法之后,我们将重点放在基于形状因子的方法上。出于可能在非线性量子光学中的应用以及超冷原子的实验的推动,我们将重点放在强排斥相互作用的机制上。我们考虑从两个初始状态开始的动力学演化:动量为零的状态下的粒子凝结和现实空间中高斯波包中的粒子凝结。结合形状因子方法和交织算子方法,我们开发了一种数值程序,该程序允许对中间状态进行显式求和,并分析非局部密度-密度相关函数的时间演化。在这两种情况下,我们都观察到在中间时间尺度上形成类晶体相关性的趋势。

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