8 citations · 16 across the 8 of their papers we have counts for
8 papers
Nonreciprocal optomechanical entanglement in an asymmetric Fabry-Perot cavity
Jia-Kang Wu, Ning Hu, Jie-Qiao Liao +1
Nonreciprocal transmission (classical nonreciprocity) in optomechanical systems based on asymmetric Fabry-Perot (F-P) cavities has been theoretically proposed and experimentally de…
Harnessing dark states: coherent control in coupled cavity-Rydberg-atom systems
Ying-Zhi Li, Xuan Zhao, Le-Man Kuang +1
The dark-state effect, caused by destructive interference, not only is an important fundamental research topic in atomic physics and quantum optics, but also has wide potential app…
Simultaneous ground-state cooling of six mechanical modes of two levitated nanoparticles
Qian Zhang, Yi Xu, Jie-Qiao Liao
Ground-state cooling is a prerequisite for exploring macroscopic quantum effects in mechanical motion of massive objects. Here we construct a polarization-angle-controllable couple…
Reshaping coupled bosonic networks: A bipartite-graph framework for optimal quantum excitation transfer
Cheng Liu, Yu-Hong Liu, Le-Man Kuang +2
Highly efficient transfer of quantum resources including quantum excitations, states, and information on coupled bosonic networks is an important task in quantum physics and quantu…
Kerr-enhanced optomechanical entanglement generation via reservoir design
Yan Li, Cheng Liu, Yu-Hong Liu +2
Quantum entanglement is a crucial resource in quantum technologies, enabling advancements in quantum computing, quantum communication, and quantum precision measurement. Here, we p…
Optimized mechanical quadrature squeezing beyond the 3-dB limit via a gradient-descent algorithm
Yu-Hong Liu, Jie-Qiao Liao
The preparation of mechanical quadrature-squeezed states holds significant importance in cavity optomechanics because the squeezed states have extensive applications in understandi…