English

Phonon Pumping by Modulating the Ultrastrong Vacuum

Quantum Physics 2024-07-31 v2

Abstract

The vacuum (i.e., the ground state) of a system in ultrastrong light-matter coupling contains particles that cannot be emitted without any dynamical perturbation and is thus called virtual. We propose a protocol for inducing and observing real mechanical excitations of a mirror enabled by the virtual photons in the ground state of a tripartite system, where a resonant optical cavity is ultrastrongly coupled to a two-level system (qubit) and, at the same time, optomechanically coupled to a mechanical resonator. Real phonons are coherently emitted when the frequency of the two-level system is modulated at a frequency comparable to that of the mechanical resonator and, therefore much lower than the optical frequency. We demonstrate that this hybrid effect is a direct consequence of the virtual photon population in the ground state. Within a classical physics analogy, attaching a weight to a spring only changes its resting position, whereas dynamically modulating the weight makes the system oscillate. In our case, however, the weight is the vacuum itself. We propose and accurately characterize a hybrid superconducting-optomechanical setup based on available state-of-the-art technology, where this effect can be experimentally observed.

Keywords

Cite

@article{arxiv.2309.15891,
  title  = {Phonon Pumping by Modulating the Ultrastrong Vacuum},
  author = {Fabrizio Minganti and Alberto Mercurio and Fabio Mauceri and Marco Scigliuzzo and Salvatore Savasta and Vincenzo Savona},
  journal= {arXiv preprint arXiv:2309.15891},
  year   = {2024}
}

Comments

16 pages, 6 figures

R2 v1 2026-06-28T12:34:08.710Z