English

The Interacting Mesoscopic Capacitor Out of Equilibrium

Mesoscale and Nanoscale Physics 2017-08-23 v2

Abstract

We consider the full nonequilibrium response of a mesoscopic capacitor in the large transparency limit, exactly solving a model with electron-electron interactions appropriate for a cavity in the quantum Hall regime. For a cavity coupled to the electron reservoir via an ideal point contact, we show that the response to any time-dependent gate voltage Vg(t)V_{\rm g}(t) is strictly linear in VgV_{\rm g}. We analyze the charge and current response to a sudden gate voltage shift, and find that this response is not captured by a simple circuit analogy. In particular, in the limit of strong interactions a sudden change in the gate voltage leads to the emission of a sequence of multiple charge pulses, the width and separation of which are controlled by the charge-relaxation time τc=hCg/e2\tau_{\rm c} = h C_{\rm g}/e^2 and the time of flight τf\tau_{\rm f}. We also consider the effect of a finite reflection amplitude in the point contact, which leads to nonlinear-in-gate-voltage corrections to the charge and current response.

Keywords

Cite

@article{arxiv.1612.04822,
  title  = {The Interacting Mesoscopic Capacitor Out of Equilibrium},
  author = {Daniel Litinski and Piet W. Brouwer and Michele Filippone},
  journal= {arXiv preprint arXiv:1612.04822},
  year   = {2017}
}

Comments

14 pages, 11 figures