English

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) (θ\theta), the cavity-environment coupling (γ0/κ\gamma_0/\kappa) and the atom-cavity detuning (Δ\Delta) on the atomic squeezing by using different initial states. The results show that no squeezing of SyS_y occurs under any condition and that variance squeezing of SxS_x appears only when Δ>0\Delta>0. Entropy squeezing quantifies quantum fluctuations more precisely than variance squeezing. Moreover, the atomic squeezing of SxS_x clearly depends on θ\theta, γ0/κ\gamma_0/\kappa, Δ\Delta 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}
}