Chiral active crystals are predicted to acquire a net angular momentum with a non-monotonic dependence on chirality, plus a non-dispersive spectral peak and a rotational entropy-production contribution.
Odd Viscosity and Odd Elasticity
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
Elasticity typically refers to a material's ability to store energy, while viscosity refers to a material's tendency to dissipate it. In this review, we discuss fluids and solids for which this is not the case. These materials display additional linear response coefficients known as odd viscosity and odd elasticity. We first introduce odd elasticity and odd viscosity from a continuum perspective, with an emphasis on their rich phenomenology, including transverse responses, modified dislocation dynamics, and topological waves. We then provide an overview of systems that display odd viscosity and odd elasticity. These systems range from quantum fluids, to astrophysical gasses, to active and driven matter. Finally, we comment on microscopic mechanisms by which odd elasticity and odd viscosity arise.
fields
cond-mat.soft 1years
2024 1verdicts
CONDITIONAL 1representative citing papers
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Spontaneous generation of angular momentum in chiral active crystals
Chiral active crystals are predicted to acquire a net angular momentum with a non-monotonic dependence on chirality, plus a non-dispersive spectral peak and a rotational entropy-production contribution.