Macroscopic tunneling of a membrane in an optomechanical double-well potential

ORAL

Abstract

The quantum tunneling of a macroscopic mechanical object is considered in a ``membrane-in-the-middle'' optomechanical resonator. We show theoretically that a cavity mode which couples quadratically to the membrane's position can create highly tunable adiabatic double-well potentials, which together with the high Q-factors demonstrated in such membranes render the observation of macroscopic quantum tunneling possible. We also show how a pulsed measurement scheme using a linearly coupled mode of the cavity can be used to monitor the tunneling.

*Supported by the DARPA ORCHID program.

Authors

  • Lukas Buchmann

    • B2 Institute, Department of Physics and College of Optical Sciences, University of Arizona
    • University of Arizona
  • Lin Zhang

    • Shaanxi Normal University
  • Aravind Chiruvelli

    • University or Arizona
  • Pierre Meystre

    • University of Arizona