English

Higher-Than-Ballistic Conduction of Viscous Electron Flows

Mesoscale and Nanoscale Physics 2017-04-04 v2

Abstract

Strongly interacting electrons can move in a neatly coordinated way, reminiscent of the movement of viscous fluids. Here we show that in viscous flows interactions facilitate transport, allowing conductance to exceed the fundamental Landauer's ballistic limit GballG_{\rm ball}. The effect is particularly striking for the flow through a viscous point contact, a constriction exhibiting the quantum-mechanical ballistic transport at T=0T=0 but governed by electron hydrodynamics at elevated temperatures. We develop a theory of the ballistic-to-viscous crossover using an approach based on quasi-hydrodynamic variables. Conductance is found to obey an additive relation G=Gball+GvisG=G_{\rm ball}+G_{\rm vis}, where the viscous contribution GvisG_{\rm vis} dominates over GballG_{\rm ball} in the hydrodynamic limit. We argue that superballistic, low-dissipation transport is a generic feature of viscous electronics.

Keywords

Cite

@article{arxiv.1607.07269,
  title  = {Higher-Than-Ballistic Conduction of Viscous Electron Flows},
  author = {Haoyu Guo and Ekin Ilseven and Gregory Falkovich and Leonid Levitov},
  journal= {arXiv preprint arXiv:1607.07269},
  year   = {2017}
}

Comments

10pgs, 4fgs

R2 v1 2026-06-22T15:03:27.955Z