activity
20242026
collaborators

6 papers

quant-ph2026

Enhancing Optomechanical Entanglement and Mechanical Squeezing by the Synergistic Effect of Quadratic Optomechanical Coupling and Coherent Feedback

Ya-Feng Jiao, Ruo-Chen Wang, Jing-Xue Liu +5

In this paper, we investigate how to achieve strong optomechanical entanglement and mechanical squeezing in a membrane-embedded cavity optomechanical system incorporating a coheren…

quant-ph2026

Nonreciprocal entanglement in exciton optomechanics with an optical parametric amplifier

Zhen-Sen Lin, Rui Zhang, Zi-Wei Jiang +4

We study nonreciprocal bipartite and tripartite entanglement in a spinning exciton-optomechanical system (EOMS) with an optical parametric amplifier (OPA). We demonstrate that nonr…

quant-ph2025

Phase-selective tripartite entanglement and asymmetric Einstein-Podolsky-Rosen steering in squeezed optomechanics

Ya-Feng Jiao, Jie Wang, Dong-Yang Wang +6

The generation and manipulation of multipartite entanglement and EPR steering in macroscopic systems not only play a fundamental role in exploring the nature of quantum mechanics,…

quant-ph2025

Strong Molecule-Light Entanglement with Molecular Cavity Optomechanics

Hong-Yun Yu, Ya-Feng Jiao, Jie Wang +6

We propose a molecular optomechanical platform to generate robust entanglement among bosonic modes-photons, phonons, and plasmons-under ambient conditions. The system integrates an…

quant-ph2025

Phase-controlled robust tripartite quantum entanglement in cavity-magnon optomechanics

Jing-Xue Liu, Ya-Feng Jiao, Bin Yin +3

The preparation of highly entangled states involving multiparticle systems is of crucial importance in quantum physics, playing a fundamental role in exploring the nature of quantu…

quant-ph2024

Enhancing tripartite photon-phonon-magnon entanglement by synergizing parametric amplifications

Yan Wang, Jin-Lei Wu, Ya-Feng Jiao +5

Tripartite entanglement as a remarkable resource in quantum information science has been extensively investigated in hybrid quantum systems, whereas it is generally weak and prone…