Multilevel simulation of hard-sphere mixtures

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Abstract

We present a multilevel Monte Carlo simulation method for analyzing multi-scale physical systems via a hierarchy of coarse-grained representations, to obtain numerically exact results, at the most detailed level. We apply the method to a mixture of size-asymmetric hard spheres, in the grand canonical ensemble. A three-level version of the method is compared with a previously studied two-level version. The extra level interpolates between the full mixture and a coarse-grained description where only the large particles are present - this is achieved by restricting the small particles to regions close to the large ones. The three-level method improves the performance of the estimator, at fixed computational cost. We analyze the asymptotic variance of the estimator and discuss the mechanisms for the improved performance.

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Rohrbach, P. B., Kobayashi, H., Scheichl, R., Wilding, N. B., & Jack, R. L. (2022). Multilevel simulation of hard-sphere mixtures. Journal of Chemical Physics, 157(12). https://doi.org/10.1063/5.0102875

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