papers

Publications (6)

physics.optics2022

High-speed tunable microwave-rate soliton microcomb

Yang He, Raymond Lopez-Rios, Usman A. Javid +5

Microwave signal generation with fast frequency tuning underlies many applications including sensing, imaging, ranging, time keeping, wireless communication, and high-speed electro…

physics.optics2023

Electrically empowered microcomb laser

Jingwei Ling, Zhengdong Gao, Shixin Xue +7

Optical frequency comb underpins a wide range of applications from communication, metrology, to sensing. Its development on a chip-scale platform -- so called soliton microcomb --…

physics.optics2022

Chip-scale Simulations in a Quantum-correlated Synthetic Space

Usman A. Javid, Raymond Lopez-Rios, Jingwei Ling +3

An efficient simulator for quantum systems is one of the original goals for the efforts to develop a quantum computer [1]. In recent years, synthetic dimension in photonics [2] hav…

physics.optics2022

Self-injection-locked second-harmonic integrated source

Jingwei Ling, Jeremy Staffa, Heming Wang +12

High coherence visible and near-visible laser sources are centrally important to the operation of advanced position/navigation/timing systems as well as classical/quantum sensing s…

physics.optics2025

Chip-scale ultrafast soliton laser

Qili Hu, Raymond Lopez-Rios, Zhengdong Gao +5

Femtosecond laser, owing to their ultrafast time scales and broad frequency bandwidths, have substantially changed fundamental science over the past decades, from chemistry and bio…

quant-ph2018

Controlling rare-earth ions in a nanophotonic resonator using the ac Stark shift

John G. Bartholomew, Tian Zhong, Jonathan M. Kindem +5

On-chip nanophotonic cavities will advance quantum information science and measurement because they enable efficient interaction between photons and long-lived solid-state spins, s…