Highly Squeezed States in Ring Resonators: Beyond the Undepleted Pump Approximation
Quantum Physics
2024-04-25 v1
Abstract
We present a multimode theory of squeezed state generation in resonant systems valid for arbitrary pump power and including pump depletion. The Hamiltonian is written in terms of asymptotic-in and -out fields from scattering theory, capable of describing a general interaction. As an example we consider the lossy generation of a highly squeezed state by an effective second-order interaction in a silicon nitride ring resonator point-coupled to a waveguide. We calculate the photon number, Schmidt number, and the second-order correlation function of the generated state in the waveguide. The treatment we present provides a path forward to study the deterministic generation of non-Gaussian states in resonant systems.
Cite
@article{arxiv.2404.15563,
title = {Highly Squeezed States in Ring Resonators: Beyond the Undepleted Pump Approximation},
author = {Colin Vendromin and Yan Liu and Zhenshan Yang and John E. Sipe},
journal= {arXiv preprint arXiv:2404.15563},
year = {2024}
}
Comments
14 pages, 4 figures