Dielectric and transport properties of a supercooled symmetrical molten salt |
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Authors: | Wilke S D Chen H C Bosse J |
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Affiliation: | Institut für Theoretische Physik, Freie Universit?t Berlin, Arnimallee 14, D-14195 Berlin, Germany. |
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Abstract: | The liquid-glass transition of the restricted primitive model for a symmetrical molten salt is studied using mode-coupling theory. The transition at high densities is predicted to obey the Lindemann criterion for melting, and the charge-density peak found in neutron-scattering experiments on ionic glass formers is qualitatively reproduced. Frequency-dependent dielectric functions, shear viscosities, and dynamical conductivities of the supercooled liquid are presented. Comparing the latter to the diffusion constant, we find that mode-coupling theory reproduces the Nernst-Einstein relation. The Stokes-Einstein radius is found to be approximately equal to the particle radius only near the high-density glass transition. |
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