3D integration enables ultralow-noise isolator-free lasers in silicon photonics C Xiang, W Jin, O Terra, B Dong, H Wang, L Wu, J Guo, TJ Morin, ...
Nature 620 (7972), 78-85, 2023
136 2023 1.3- m Reflection Insensitive InAs/GaAs Quantum Dot Lasers Directly Grown on Silicon J Duan, H Huang, B Dong, D Jung, JC Norman, JE Bowers, F Grillot
IEEE Photonics Technology Letters 31 (5), 345-348, 2019
116 2019 Physics and applications of quantum dot lasers for silicon photonics F Grillot, JC Norman, J Duan, Z Zhang, B Dong, H Huang, WW Chow, ...
Nanophotonics 9 (6), 1271-1286, 2020
66 2020 Uncovering recent progress in nanostructured light-emitters for information and communication technologies F Grillot, J Duan, B Dong, H Huang
Light: Science & Applications 10 (1), 156, 2021
50 2021 Epitaxial quantum dot lasers on silicon with high thermal stability and strong resistance to optical feedback H Huang, J Duan, B Dong, J Norman, D Jung, JE Bowers, F Grillot
APL Photonics 5 (1), 2020
43 2020 Dynamic and nonlinear properties of epitaxial quantum dot lasers on silicon for isolator-free integration J Duan, H Huang, B Dong, JC Norman, Z Zhang, JE Bowers, F Grillot
Photonics Research 7 (11), 1222-1228, 2019
43 2019 Broadband quantum-dot frequency-modulated comb laser B Dong, M Dumont, O Terra, H Wang, A Netherton, JE Bowers
Light: Science & Applications 12 (1), 182, 2023
38 2023 Effect of p-doping on the intensity noise of epitaxial quantum dot lasers on silicon J Duan, Y Zhou, B Dong, H Huang, JC Norman, D Jung, Z Zhang, C Wang, ...
Optics Letters 45 (17), 4887-4890, 2020
31 2020 Frequency comb dynamics of a 1.3 μm hybrid-silicon quantum dot semiconductor laser with optical injection B Dong, H Huang, J Duan, G Kurczveil, D Liang, RG Beausoleil, F Grillot
Optics letters 44 (23), 5755-5758, 2019
30 2019 Dynamic and nonlinear properties of epitaxial quantum-dot lasers on silicon operating under long-and short-cavity feedback conditions for photonic integrated circuits B Dong, JD Chen, FY Lin, JC Norman, JE Bowers, F Grillot
Physical Review A 103 (3), 033509, 2021
23 2021 1.3-µm passively mode-locked quantum dot lasers epitaxially grown on silicon: gain properties and optical feedback stabilization B Dong, XC de Labriolle, S Liu, M Dumont, H Huang, J Duan, JC Norman, ...
Journal of Physics: Photonics 2 (4), 045006, 2020
23 2020 Dynamic performance and reflection sensitivity of quantum dot distributed feedback lasers with large optical mismatch B Dong, J Duan, H Huang, JC Norman, K Nishi, K Takemasa, ...
Photonics research 9 (8), 1550-1558, 2021
20 2021 Four-wave mixing in 1.3 μm epitaxial quantum dot lasers directly grown on silicon J Duan, B Dong, WW Chow, H Huang, S Ding, S Liu, JC Norman, ...
Photonics Research 10 (5), 1264-1270, 2022
16 2022 Influence of the polarization anisotropy on the linewidth enhancement factor and reflection sensitivity of 1.55-μm InP-based InAs quantum dash lasers B Dong, J Duan, C Shang, H Huang, AB Sawadogo, D Jung, Y Wan, ...
Applied Physics Letters 115 (9), 2019
16 2019 Multimode physics in the mode locking of semiconductor quantum dot lasers F Grillot, WW Chow, B Dong, S Ding, H Huang, J Bowers
Applied Sciences 12 (7), 3504, 2022
11 2022 Subspace tracking for phase noise source separation in frequency combs A Razumov, HR Heebøll, M Dummont, O Terra, B Dong, J Riebesehl, ...
Optics Express 31 (21), 34325-34347, 2023
10 2023 Temperature dependent linewidth rebroadening in quantum dot semiconductor lasers F Köster, J Duan, B Dong, H Huang, F Grillot, K Lüdge
Journal of Physics D: Applied Physics 53 (23), 235106, 2020
8 2020 Turnkey locking of quantum-dot lasers directly grown on Si B Dong, Y Wan, WW Chow, C Shang, A Prokoshin, E Alkhazraji, ...
Nature Photonics, 1-8, 2024
7 2024 Spectral dispersion of the linewidth enhancement factor and four wave mixing conversion efficiency of an InAs/GaAs multimode quantum dot laser S Ding, B Dong, H Huang, J Bowers, F Grillot
Applied Physics Letters 120 (8), 2022
7 2022 Quantum Dot Lasers on Silicon: Nonlinear Properties, Dynamics, and Applications B Dong
Springer International Publishing, 2023
4 2023