Physical Review Research (Dec 2021)

Hydrodynamics of ideal fracton fluids

  • Kevin T. Grosvenor,
  • Carlos Hoyos,
  • Francisco Peña-Benitez,
  • Piotr Surówka

DOI
https://doi.org/10.1103/PhysRevResearch.3.043186
Journal volume & issue
Vol. 3, no. 4
p. 043186

Abstract

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Low-energy dynamics of many-body fracton excitations necessary to describe topological defects should be governed by a novel type of hydrodynamic theory. We use a Poisson bracket approach to systematically derive hydrodynamic equations from conservation laws of scalar theories with fracton excitations. We study three classes of theories. In the first class we introduce a general action for a scalar with a shift symmetry linear in the spatial coordinates, whereas the second one corresponds with a complex scalar, while the third class serves as a toy model for disclinations and dislocations propagating along the Burgers vector. We apply our construction to study hydrodynamic fluctuations around equilibrium states and derive the dispersion relations of hydrodynamic modes.