English

Equilibrium Parametric Amplification in Raman-Cavity Hybrids

Quantum Physics 2024-09-13 v2 Mesoscale and Nanoscale Physics

Abstract

Parametric resonances and amplification have led to extraordinary photoinduced phenomena in pump-probe experiments. While these phenomena manifest themselves in out-of-equilibrium settings, here, we present the striking result of parametric amplification in equilibrium. In particular, we demonstrate that quantum and thermal fluctuations of a Raman-active mode amplifies light inside a cavity, at equilibrium, when the Raman mode frequency is twice the cavity mode frequency. This noise-driven amplification leads to the creation of an unusual parametric Raman polariton, intertwining the Raman mode with cavity squeezing fluctuations, with smoking gun signatures in Raman spectroscopy. In the resonant regime, we show the emergence of not only quantum light amplification but also localization and static shift of the Raman mode. Apart from the fundamental interest of equilibrium parametric amplification our study suggests a resonant mechanism for controlling Raman modes and thus matter properties by cavity fluctuations. We conclude by outlining how to compute the Raman-cavity coupling, and suggest possible experimental realization

Keywords

Cite

@article{arxiv.2312.14243,
  title  = {Equilibrium Parametric Amplification in Raman-Cavity Hybrids},
  author = {H. P. Ojeda Collado and Marios H. Michael and Jim Skulte and Angel Rubio and Ludwig Mathey},
  journal= {arXiv preprint arXiv:2312.14243},
  year   = {2024}
}

Comments

as accepted in PRL

R2 v1 2026-06-28T13:59:14.060Z