A phonon laser in the quantum regime

POSTER

Abstract

We demonstrate a trapped-ion system with two competing dissipation channels, implemented independently on two ion species co-trapped in a Paul trap. By controlling coherent spin-oscillator couplings and optical pumping rates we explore the phase diagram of this system, which exhibits a regime analogous to that of a (phonon) laser but operates close to the quantum ground state with an average phonon number of below ten. We demonstrate phase locking of the oscillator to an additional resonant drive, and also observe the phase diffusion of the resulting state under dissipation by reconstructing the quantum state from a measurement of the characteristic function.

Presenters

  • Tanja Behrle

    • ETH Zurich

Authors

  • Tanja Behrle

    • ETH Zurich
  • Thanh Long Nguyen

    • ETH Zurich
  • Florentin Reiter

    • ETH Zurich
  • David Baur

    • ETH Zurich
  • Brennan de Neeve

    • ETH Zurich
  • Martin Stadler

    • ETH Zurich
  • Matteo Marinelli

    • ETH Zurich
  • Francesco Lancellotti

    • ETH Zurich
  • Susanne F Yelin

    • Harvard University
  • Jonathan Home

    • ETH Zurich