Two-dimensional electron gases as non-Newtonian fluids
Abstract
Two-dimensional electron systems offer an appealing platform to explore long-lived excitations arising due to collinear carrier scattering enabled by phase-space constraints at the Fermi surface. Recently it was found that these effects can boost excitation lifetimes over the fundamental bound set by Landau's Fermi-liquid theory by a factor as large as with . Long-lived degrees of freedom possess the capability to amplify the response to weak perturbations, producing lasting collective memory effects. This leads to non-Newtonian hydrodynamics in 2D electron fluids driven by multiple viscous modes with scale-dependent viscosity. We describe these modes as Fermi surface modulations of odd parity evolving in space and time, and discuss their implications for experimental studies of electron hydrodynamics.
Cite
@article{arxiv.2305.02883,
title = {Two-dimensional electron gases as non-Newtonian fluids},
author = {Serhii Kryhin and Leonid Levitov},
journal= {arXiv preprint arXiv:2305.02883},
year = {2024}
}
Comments
6pgs, 1fg