Generating strong mechanical squeezing via combined squeezed vacuum field and two-tone driving

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Hauptverfasser: Wu, Xiao-Jie, Cheng, Huan-Huan, Bai, Cheng-Hua, Wu, Shao-Xiong
Format: Preprint
Veröffentlicht: 2025
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author Wu, Xiao-Jie
Cheng, Huan-Huan
Bai, Cheng-Hua
Wu, Shao-Xiong
author_facet Wu, Xiao-Jie
Cheng, Huan-Huan
Bai, Cheng-Hua
Wu, Shao-Xiong
contents We propose a novel scheme for generating mechanical squeezed states based on the combined mechanism of a two-tone driving and a squeezed vacuum field. This innovative approach achieves a remarkable improvement in mechanical squeezing performance across the entire range of red/blue detuning ratios. Our study reveals that the squeezed vacuum field not only induces position squeezing of the mechanical oscillator but also facilitates momentum squeezing through phase matching. Moreover, the total squeezing degree exhibits nonlinear enhancement with the increasing of squeezing parameter $r$. The mechanical squeezed state exhibits a $2π$-periodic dependence in relation to the squeezing phase $θ$, offering experimental implementation with a high degree of operational flexibility. Notably, the scheme exhibits strong robustness against cavity dissipation and environmental thermal noise, substantially relaxing the strict parameter-matching requirements inherent in conventional approaches.
format Preprint
id arxiv_https___arxiv_org_abs_2512_10215
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Generating strong mechanical squeezing via combined squeezed vacuum field and two-tone driving
Wu, Xiao-Jie
Cheng, Huan-Huan
Bai, Cheng-Hua
Wu, Shao-Xiong
Quantum Physics
We propose a novel scheme for generating mechanical squeezed states based on the combined mechanism of a two-tone driving and a squeezed vacuum field. This innovative approach achieves a remarkable improvement in mechanical squeezing performance across the entire range of red/blue detuning ratios. Our study reveals that the squeezed vacuum field not only induces position squeezing of the mechanical oscillator but also facilitates momentum squeezing through phase matching. Moreover, the total squeezing degree exhibits nonlinear enhancement with the increasing of squeezing parameter $r$. The mechanical squeezed state exhibits a $2π$-periodic dependence in relation to the squeezing phase $θ$, offering experimental implementation with a high degree of operational flexibility. Notably, the scheme exhibits strong robustness against cavity dissipation and environmental thermal noise, substantially relaxing the strict parameter-matching requirements inherent in conventional approaches.
title Generating strong mechanical squeezing via combined squeezed vacuum field and two-tone driving
topic Quantum Physics
url https://arxiv.org/abs/2512.10215