activity
20232026
most citedQuantum Weak Force Sensing with Squeezed Magnomechanics

1 citations · 1 across the 4 of their papers we have counts for

collaborators

7 papers

physics.optics2026

Molecular-optomechanical phonon laser

Bin Yin, Jie Wang, Qian Zhang +3

Molecular cavity optomechanics (COM) leverages ultrastrong interactions between confined optical fields and high-frequency molecular vibration, providing a unique platform for expl…

physics.optics2025

Molecular optomechanically-induced transparency

Bin Yin, Jie Wang, Mei-Yu Peng +5

Molecular cavity optomechanics (COM), characterized by remarkably efficient optomechanical coupling enabled by a highly localized light field and ultra-small effective mode volume,…

quant-ph20241 cited

Quantum Weak Force Sensing with Squeezed Magnomechanics

Qian Zhang, Jie Wang, Tian-Xiang Lu +2

Cavity magnomechanics, exhibiting remarkable experimental tunability, rich magnonic nonlinearities, and compatibility with various quantum systems, has witnessed considerable advan…

quant-ph2024

Quantum Advantage of One-Way Squeezing in Enhancing Weak-Force Sensing

Jie Wang, Qian Zhang, Ya-Feng Jiao +5

Cavity optomechanical (COM) sensors, featuring efficient light-motion couplings, have been widely used for ultra sensitive measurements of various physical quantities ranging from…

quant-ph2024

Observation of quantum strong Mpemba effect

Jie Zhang, Gang Xia, Chun-Wang Wu +10

An ancient and counterintuitive phenomenon know as the Mpemba effect (water can cool faster when initially heated up) showcases the critical role of initial conditions in relaxatio…

physics.optics2023

Multi-color nonreciprocal optical amplifier with spinning active optomechanics

Ru-Ting Sun, Mei-Yu Peng, Tian-Xiang Lu +4

We propose to achieve a multi-color nonreciprocal optical amplifier, a crucial device in optical communication and information processing, by spinning an active resonator. We show…