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Published on: November 8, 2018
Water Dielectric Function at Finite Wavelength and the Convergence of Its Large Wavelength Limit (Static Dielectric)
Prapti Kakkar1, August O'Neil2, Alex Travesset2
1Ames National Laboratory, and Department of Chemical and Biological Engineering, Iowa State University, Ames, Iowa 50011, United States.
Abstract:
We provide a general analysis of the longitudinal dielectric function εl(k) via fluctuation formulas at finite wavelength k, including the static dielectric constant εw = εl(k → 0), and analyze the different sources of errors, deriving explicit formulas. Simulations with the SPC/E water model show that the convergence of fluctuation formulas to compute the static dielectric constant is slow and requires long simulations. The analysis of εl(k) allows us to identify the long- and short-wavelength limits and provide a precise determination of the location of the poles as well as the zeros in the complex plane, which determine the short-distance form of the electrostatic (Coulomb) interaction among charged particles.
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