collaborators

5 papers

quant-ph2025

Perfect continuous-variable quantum microcombs

Kangkang Li, Yue Wang, Ze Wang +7

Quantum microcombs generated in high-Q microresonators provide compact, multiplexed sources of entangled modes for continuous-variable (CV) quantum information processing. While de…

physics.optics2025

Power-efficient ultra-broadband soliton microcombs in resonantly-coupled microresonators

Kaixuan Zhu, Xinrui Luo, Yuanlei Wang +18

The drive to miniaturize optical frequency combs for practical deployment has spotlighted microresonator solitons as a promising chip-scale candidate. However, these soliton microc…

physics.optics2025

Integrated optomechanical ultrasonic sensors with nano-Pascal-level sensitivity

Xuening Cao, Hao Yang, Min Wang +9

Ultrasonic sensors are widely used for object detection and localization in underwater and biological settings. The operational range and spatial resolution are inherently limited…

physics.optics2025

Compact Turnkey Soliton Microcombs at Microwave Rates via Wafer-Scale Fabrication

Yuanlei Wang, Ze Wang, Chenghao Lao +19

Soliton microcombs generated in nonlinear microresonators facilitate the photonic integration of timing, frequency synthesis, and astronomical calibration functionalities. For thes…

physics.optics2024

Large-scale cluster quantum microcombs

Ze Wang, Kangkang Li, Yue Wang +11

An optical frequency comb comprises a cluster of equally spaced, phase-locked spectral lines. Replacing these classical components with correlated quantum light gives rise to clust…