activity
20172022
most citedMitigating photorefractive effect in thin-filmlithium niobate microring resonators

94 citations · 173 across the 6 of their papers we have counts for

collaborators

15 papers

physics.optics20218 cited

Ultralow-threshold thin-film lithium niobate optical parametric oscillator

Juanjuan Lu, Ayed Al Sayem, Zheng Gong +3

Materials with strong optical nonlinearity, especially lithium niobate, play a critical role in building optical parametric oscillators (OPOs). However, chip-scale integr…

physics.app-ph2020

III-Nitride nanophotonics for beyond-octave soliton generation and self-referencing

Xianwen Liu, Zheng Gong, Alexander W. Bruch +3

Frequency microcombs, successors to mode-locked laser and fiber combs, enable miniature rulers of light for applications including precision metrology, molecular fingerprinting, an…

physics.optics202094 cited

Mitigating photorefractive effect in thin-filmlithium niobate microring resonators

Yuntao Xu, Mohan Shen, Juanjuan Lu +3

Thin-film lithium niobate is an attractive integrated photonics platform due to its low optical loss and favorable optical nonlinear and electro-optic properties. However, in appli…

physics.optics2020

Stable tuning of photorefractive micro-cavities using an auxiliary laser

Joshua B. Surya, Juanjuan Lu, Yuntao Xu +1

Cavity nonlinear optics enables intriguing physical phenomena to occur at micro- or nano-scales with modest input powers. While this enhances capabilities in applications such as c…

physics.optics202059 cited

Efficient frequency conversion in a degenerate microresonator

Jia-Qi Wang, Yuan-Hao Yang, Ming Li +7

Microresonators on a photonic chip could enhance nonlinear optics effects, thus are promising for realizing scalable high-efficiency frequency conversion devices. However, fulfilli…

physics.optics2020

Photonic dissipation control for Kerr soliton generation in strongly Raman-active media

Zheng Gong, Ming Li, Xianwen Liu +6

Microcavity solitons enable miniaturized coherent frequency comb sources. However, the formation of microcavity solitons can be disrupted by stimulated Raman scattering (SRS), part…