Abstract
We describe amethod for computing transport coefficients fromthe direct evaluation of large deviation functions. Thismethod is general, relying on only equilibriumfluctuations, and is statistically efficient, employing trajectory based importance sampling. Equilibrium fluctuations of molecular currents are characterized by their large deviation functions, which are scaled cumulant generating functions analogous to the free energies. A diffusion Monte Carlo algorithm is used to evaluate the large deviation functions, from which arbitrary transport coefficients are derivable. We find significant statistical improvement over traditional Green-Kubo based calculations. The systematic and statistical errors of this method are analyzed in the context of specific transport coefficient calculations, including the shear viscosity, interfacial friction coefficient, and thermal conductivity.
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Gao, C. Y., & Limmer, D. T. (2017). Transport coefficients from large deviation functions. Entropy, 19(11). https://doi.org/10.3390/e19110571
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