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

Communication-ready high-power soliton microcombs in highly-dispersive Fabry-Perot-microresonators

Yinke Cheng, Zhenyu Xie, Yuanlei Wang +9

Microcombs generated in optical microresonators are widely regarded as promising light sources for next-generation communication systems, but the optical power available per comb l…

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

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…