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  • Letter

Extractable work in quantum electromechanics

Oisín Culhane*, Mark T. Mitchison†, and John Goold‡

  • Department of Physics, Trinity College Dublin, Dublin 2, Ireland

  • *oculhane@tcd.ie
  • †mark.mitchison@tcd.ie
  • ‡gooldj@tcd.ie

Phys. Rev. E 106, L032104 – Published 30 September, 2022

DOI: https://doi.org/10.1103/PhysRevE.106.L032104

Abstract

Recent experiments have demonstrated the generation of coherent mechanical oscillations in a suspended carbon nanotube, which are driven by an electric current through the device above a certain voltage threshold, in close analogy with a lasing transition. We investigate this phenomenon from the perspective of work extraction, by modeling a nanoelectromechanical device as a quantum flywheel or battery that converts electrical power into stored mechanical energy. We introduce a microscopic model that qualitatively matches the experimental finding, and we compute the Wigner function of the quantum vibrational mode in its nonequilibrium steady state. We characterize the threshold for self-sustained oscillations using two approaches to quantifying work deposition in nonequilibrium quantum thermodynamics: the ergotropy and the nonequilibrium free energy. We find that ergotropy serves as an order parameter for the phonon lasing transition. The framework we employ to describe work extraction is general and widely transferable to other mesoscopic quantum devices.

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