论文标题
指纹和马尔可夫的通用结构化骨体环境的闭合
Fingerprint and universal Markovian closure of structured bosonic environments
论文作者
论文摘要
我们利用了玻色子环境的链图映射转换的属性,以确定能够捕获环境特征特征或指纹的有限模式集合。此外,我们表明,残留浴模模式的可数无穷大可以被通用的马尔可夫闭合所取代,即,经历了一种经历了lindblad型动力学的少量阻尼模式,该模式的参数化与所考虑的光谱密度无关。我们表明,马尔可夫的闭合提供了关于标准链映射技术的二次加速,并使内存要求独立于仿真时间,同时保留了指纹模式上的所有信息。我们说明了马尔可夫闭合在线性光谱的计算中的应用,也说明了非线性光谱响应,这是一个相关的实验可访问的许多身体一致性证人,目前缺乏在现实环境中有效地在现实环境中进行有效的数字精确计算。
We exploit the properties of chain mapping transformations of bosonic environments to identify a finite collection of modes able to capture the characteristic features, or fingerprint, of the environment. Moreover we show that the countable infinity of residual bath modes can be replaced by a universal Markovian closure, namely a small collection of damped modes undergoing a Lindblad-type dynamics whose parametrization is independent of the spectral density under consideration. We show that the Markovian closure provides a quadratic speed-up with respect to standard chain mapping techniques and makes the memory requirement independent of the simulation time, while preserving all the information on the fingerprint modes. We illustrate the application of the Markovian closure to the computation of linear spectra but also to non-linear spectral response, a relevant experimentally accessible many body coherence witness for which efficient numerically exact calculations in realistic environments are currently lacking.