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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Gauge Fixing for Heat-Transport Simulations
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Gauge Fixing for Heat-Transport Simulations

机译:仪表固定热传输模拟

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Thermal and other transport coefficients were recently shown to be largely independent of the microscopic representation of the energy (current) densities or, more generally, of the relevant conserved densities/currents. In this Article, we show how this gauge invariance, which is intimately related to the intrinsic indeterminacy of the energy of individual atoms in interacting systems, can be exploited to optimize the statistical properties of the current time series from which the transport coefficients are evaluated. To this end, we introduce and exploit a variational principle that relies on the metric properties of the conserved currents, treated as elements of an abstract linear space. Different metrics would result in different variational principles. In particular, we show that a recently proposed data-analysis technique based on the theory of transport in multicomponent systems can be recovered by a suitable choice of this metric.
机译:最近显示热和其他传输系数在很大程度上与能量(电流)密度的微观表示或更通常是相关的保守密度/电流。 在本文中,我们展示了这种规范不变性,其与相互作用系统中单个原子的能量的内在不确定相关的该仪表不变性,可以利用来优化评估传输系数的当前时间序列的统计特性。 为此,我们介绍和利用依赖于保守电流的度量特性的变分原理,作为抽象线性空间的元素。 不同的指标将导致不同的变分原理。 特别是,我们表明最近提出的基于多组分系统中的传输理论的数据分析技术可以通过适当的这种度量选择来恢复。

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