John Edward Bowers
Affiliations: | Electrical & Computer Engineering | University of California, Santa Barbara, Santa Barbara, CA, United States |
Area:
Electronics & PhotonicsWebsite:
https://optoelectronics.ece.ucsb.edu/profile/john-bowersGoogle:
"John Edward Bowers"Bio:
Parents
Sign in to add mentorGordon S. Kino | grad student | 1981 | Stanford (Physics Tree) | |
(Broadband monolithic Sezawa wave storage correlators and convolvers.) |
Children
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Publications
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Xiang C, Jin W, Terra O, et al. (2023) 3D integration enables ultralow-noise isolator-free lasers in silicon photonics. Nature. 620: 78-85 |
Wu L, Xie W, Chen HJ, et al. (2023) AlGaAs soliton microcombs at room temperature. Optics Letters. 48: 3853-3856 |
Dong B, Dumont M, Terra O, et al. (2023) Broadband quantum-dot frequency-modulated comb laser. Light, Science & Applications. 12: 182 |
Netherton AM, Gao Y, Pestana N, et al. (2023) Athermal, fabrication-tolerant Si-SiN FIR filters for a silicon photonics foundry platform. Optics Express. 31: 23952-23965 |
Koscica R, Wan Y, He W, et al. (2023) Heterogeneous integration of a III-V quantum dot laser on high thermal conductivity silicon carbide. Optics Letters. 48: 2539-2542 |
Zhou Z, Ou X, Fang Y, et al. (2023) Prospects and applications of on-chip lasers. Elight. 3: 1 |
Yang KY, Shirpurkar C, White AD, et al. (2022) Multi-dimensional data transmission using inverse-designed silicon photonics and microcombs. Nature Communications. 13: 7862 |
Shang C, Feng K, Hughes ET, et al. (2022) Electrically pumped quantum-dot lasers grown on 300 mm patterned Si photonic wafers. Light, Science & Applications. 11: 299 |
Tran MA, Zhang C, Morin TJ, et al. (2022) Extending the spectrum of fully integrated photonics to submicrometre wavelengths. Nature |
Li M, Chang L, Wu L, et al. (2022) Integrated Pockels laser. Nature Communications. 13: 5344 |