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HAO LIU
HAO LIU
PhD alumni of Electrical and Computer Engineering, UCLA
Verified email at ucla.edu
Title
Cited by
Cited by
Year
Smooth and flat phase-locked Kerr frequency comb generation by higher order mode suppression
SW Huang, H Liu, J Yang, M Yu, DL Kwong, CW Wong
Scientific reports 6 (1), 26255, 2016
742016
Nanometric precision distance metrology via hybrid spectrally resolved and homodyne interferometry in a single soliton frequency microcomb
YS Jang, H Liu, J Yang, M Yu, DL Kwong, CW Wong
Physical review letters 126 (2), 023903, 2021
622021
Real-time transition dynamics and stability of chip-scale dispersion-managed frequency microcombs
Y Li, SW Huang, B Li, H Liu, J Yang, AK Vinod, K Wang, M Yu, DL Kwong, ...
Light: Science & Applications 9 (1), 52, 2020
392020
Graphene Q-switched distributed feedback fiber lasers with narrow linewidth approaching the transform limit
BC Yao, YJ Rao, SW Huang, Y Wu, ZY Feng, C Choi, H Liu, HF Qi, ...
Optics express 25 (7), 8202-8211, 2017
292017
Stimulated generation of deterministic platicon frequency microcombs
H Liu, SW Huang, W Wang, J Yang, M Yu, DL Kwong, P Colman, ...
Photonics Research 10 (8), 1877-1885, 2022
182022
Coherent terahertz radiation with 2.8-octave tunability through chip-scale photomixed microresonator optical parametric oscillation
W Wang, PK Lu, AK Vinod, D Turan, JF McMillan, H Liu, M Yu, DL Kwong, ...
Nature Communications 13 (1), 5123, 2022
102022
Predicting Kerr soliton combs in microresonators via deep neural networks
T Tan, C Peng, Z Yuan, X Xie, H Liu, Z Xie, SW Huang, Y Rao, B Yao
Journal of Lightwave Technology 38 (23), 6591-6599, 2020
102020
Bright square pulse generation by pump modulation in a normal GVD microresonator
H Liu, SW Huang, J Yang, M Yu, DL Kwong, CW Wong
CLEO: QELS_Fundamental Science, FTu3D. 3, 2017
102017
Mapping ultrafast timing jitter in dispersion-managed 89 GHz frequency microcombs via self-heterodyne linear interferometry
W Wang, H Liu, J Yang, AK Vinod, J Lim, YS Jang, H Zhou, M Yu, PGQ Lo, ...
arXiv preprint arXiv:2108.01177, 2021
42021
Smooth coherent Kerr frequency combs generation with broadly tunable pump by higher order mode suppression
SW Huang, H Liu, J Yang, M Yu, DL Kwong, CW Wong
arXiv preprint arXiv:1602.00824, 2016
42016
Extended access to self-disciplined platicon generation in normal dispersion regime via single FSR intensity-modulated pump
H Liu, W Wang, SW Huang, M Yu, DL Kwong, CW Wong
2020 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2020
32020
Observation of deterministic double dissipative-Kerr-soliton generation with avoided mode crossing
H Liu, W Wang, J Yang, M Yu, DL Kwong, CW Wong
Physical Review Research 5 (1), 013172, 2023
2023
Deterministic double DKS generation in an 88 GHz single-mode Si3N4 microring with controlled spacing
H Liu, W Wang, M Yu, DL Kwong, CW Wong
2022 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2022
2022
Nanometric precision metrology based on hybrid spectrally resolved and homodyne interferometry via a single soliton microcomb
H Liu, YS Jang, J Yang, M Yu, DL Kwong, CW Wong
CLEO: Science and Innovations, STu2A. 6, 2021
2021
Nanometric precision distance metrology via chip-scale soliton microcombs
YS Jang, H Liu, J Yang, M Yu, DL Kwong, CW Wong
arXiv preprint arXiv:2003.13222, 2020
2020
Lotus-like dual soliton generation and phase shifting in an 88 GHz high-order-mode-suppressed Si3N4 microring
H Liu, J Yang, SW Huang, M Yu, DL Kwong, CW Wong
CLEO: Science and Innovations, SW4H. 4, 2019
2019
Hybrid dual comb spectroscopy with largely dissimilar FSR
H Liu, SW Huang, J Yang, M Yu, DL Kwong, CW Wong
CLEO: Science and Innovations, SW4L. 3, 2018
2018
Coherent phase-locked single-mode frequency microcombs in the C and L bands without mode-crossing disruptions
H Liu, SW Huang, J Yang, AK Vinod, M Yu, DL Kwong, CW Wong
2016 IEEE Photonics Conference (IPC), 352-353, 2016
2016
Generation of single-mode and phase-locked frequency microcombs without mode crossings
H Liu, SW Huang, J Yang, AK Vinod, M Yu, DL Kwong, CW Wong
CLEO: Science and Innovations, STu4Q. 1, 2016
2016
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Articles 1–19