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Bulk viscosity of the rigid rotor one-component plasma

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arxiv 2405.18175 v1 pith:AD5VBBOZ submitted 2024-05-28 physics.plasm-ph

classification physics.plasm-ph
keywords plasmaviscositybulklargemolecularone-componentvaluescoulomb
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abstract

Bulk viscosity of a plasma consisting of strongly coupled diatomic ions is computed using molecular dynamics simulations. The simulations are based on the rigid rotor one-component plasma, which is introduced as a model system that adds two degrees of molecular rotation to the traditional one-component plasma. It is characterized by two parameters: the Coulomb coupling parameter, $\Gamma$, and the bond length parameter, $\Omega$. Results show that the long-range nature of the Coulomb potential can lead to long rotational relaxation times, which in turn yield large values for bulk viscosity. The bulk-to-shear viscosity ratio is found to span from small to large values depending on the values of $\Gamma$ and $\Omega$. Although bulk viscosity is often neglected in plasma modeling, these results motivate that it can be large in molecular plasmas with rotational degrees of freedom.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. On the Theory of Bulk Viscosity of Cold Plasmas and Thermodynamics of Alkali-Noble Gas Cocktails

    physics.plasm-ph 2025-11 conditional novelty 7.0 of 10

    For cold plasmas, the frequency-dependent bulk viscosity follows the Mandelstam-Leontovich/Drude form with high accuracy, and can exceed shear viscosity by orders of magnitude.

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