English

Transverse viscous transport in classical solids

Soft Condensed Matter 2021-06-23 v3 Materials Science

Abstract

The transverse velocity time correlation function C~T(k,ω){\tilde C}_{\rm T}(k,\omega) with kk and ω\omega being the wavenumber and the frequency, respectively, is a fundamental quantity in determining the transverse mechanical and transport properties of materials. In ordinary liquids, a nonzero value of C~T(k,0){\tilde C}_{\rm T}(k,0) is inevitably associated with viscous material flows. Curiously, even in solids where significant material flows are precluded due to frozen positional degrees of freedom, molecular dynamics simulations reveal that C~T(k,0){\tilde C}_{\rm T}(k,0) certainly takes a nonzero value, and in consequence, the time integration of the velocity field shows definite diffusive behavior with diffusivity C~T(k,0)/3{\tilde C}_{\rm T}(k,0)/3. We demonstrate that this diffusive behavior can be attributed to a solid-specific viscous transport. The resultant viscosity is interpreted as the renormalized viscosity accounting for the nonlinear inertia effect.

Keywords

Cite

@article{arxiv.1911.05997,
  title  = {Transverse viscous transport in classical solids},
  author = {Akira Furukawa},
  journal= {arXiv preprint arXiv:1911.05997},
  year   = {2021}
}

Comments

8pages, 5figures

R2 v1 2026-06-23T12:15:35.500Z