Entropy and Variance Squeezing of V-type Atom in Dissipative Cavity
Quantum Physics
2026-01-06 v1
Abstract
Based on Ref.\cite{Riccardi A}, we investigate the entropy and variance squeezing of a V-type atom in a dissipative cavity, and discuss the influences of parameters including the spontaneously generated interference (SGI) (), the cavity-environment coupling () and the atom-cavity detuning () on the atomic squeezing by using different initial states. The results show that no squeezing of occurs under any condition and that variance squeezing of appears only when . Entropy squeezing quantifies quantum fluctuations more precisely than variance squeezing. Moreover, the atomic squeezing of clearly depends on , , and the initial state. These findings are meaningful for quantum information processing as an ultra-low-noise resource.
Keywords
Cite
@article{arxiv.2601.01519,
title = {Entropy and Variance Squeezing of V-type Atom in Dissipative Cavity},
author = {Zijin Liang and Qiying Pan and Hong-Mei Zou and Chenrui Bi},
journal= {arXiv preprint arXiv:2601.01519},
year = {2026}
}