activity
20242026
collaborators

15 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…

physics.optics2026

Omnidirectional photonic chiral flatband in nonlocal membrane metasurfaces

Baohe Zhang, Jumin Qiu, Meng Qin +7

Omnidirectional flat-band resonances, characterized by an enhanced photonic density of states and inherent angular robustness, are highly sought-after in integrated nanophotonic de…

quant-ph2026

Nonreciprocal photon bundle emission

Baijun Li, Jing-Xue Liu, Tian-Xiang Lu +3

Quantum squeezing, a cornerstone of quantum optics and photonics, has played a key role in achieving ultra-precision sensing and realizing nonreciprocal engineering. However, the n…

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…

physics.optics2026

Liquid photonic-molecule microlasers for ultrasensitive biosensing

Yan Wang, Yu-Hao Hu, Jin-Lei Wu +7

Droplet microlasers, as promising tools for biophotonics and biomedical sciences, have witnessed rapid advances due to their flexible reconfigurability, high sensitivity to stimuli…

quant-ph2026

General dark-state theory for arbitrary multilevel quantum systems

Xuan Zhao, Le-Man Kuang, Jie-Qiao Liao

The dark-state effect, caused by destructive quantum interference, is an important physical effect in atomic physics and quantum optics. It not only deepens the understanding of li…