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Variational calculation of transport coefficients in diffusive lattice gases

机译:扩散晶格气中运输系数的变分计算

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A diffusive lattice gas is characterized by the diffusion coefficient depending only on the density. The Green- Kubo formula for diffusivity can be represented as a variational formula, but even when the equilibrium properties of a lattice gas are analytically known, the diffusion coefficient can be computed only in the exceptional situation when the lattice gas is gradient. In the general case, minimization over an infinite-dimensional space is required. We propose an approximation scheme based on minimizing over finite-dimensional subspaces of functions. The procedure is demonstrated for one-dimensional generalized exclusion processes in which each site can accommodate at most two particles. Our analytical predictions provide upper bounds for the diffusivity that are very close to simulation results throughout the entire density range. We also analyze nonequilibrium density profiles for finite chains coupled to reservoirs. The predictions for the profiles are in excellent agreement with simulations.
机译:漫射晶格气体的特征在于扩散系数,这仅取决于密度。用于扩散性的绿色kubo公式可以表示为变分式,但是即使当晶格气的平衡性质被公知的时,也可以仅在晶格气是梯度的特殊情况下仅计算扩散系数。在一般情况下,需要在无限尺寸空间上最小化。我们提出了一种基于最小化功能的有限子空间的近似方案。对于一维广义排斥方法,对该过程进行了说明,其中每个部位可以在大多数两种颗粒上容纳。我们的分析预测为在整个密度范围内非常接近模拟结果的扩散性提供了上限。我们还分析了与储层联系的有限链的非纤维密度曲线。对型材的预测与模拟非常一致。

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