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Rosalyn Koscica
Rosalyn Koscica
在 ucsb.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
High-temperature reliable quantum-dot lasers on Si with misfit and threading dislocation filters
C Shang, E Hughes, Y Wan, M Dumont, R Koscica, J Selvidge, R Herrick, ...
Optica 8 (5), 749-754, 2021
1042021
High Speed Evanescent Quantum‐Dot Lasers on Si
Y Wan, C Xiang, J Guo, R Koscica, MJ Kennedy, J Selvidge, Z Zhang, ...
Laser & Photonics Reviews 15 (8), 2100057, 2021
792021
Electrically pumped quantum-dot lasers grown on 300 mm patterned Si photonic wafers
C Shang, K Feng, ET Hughes, A Clark, M Debnath, R Koscica, G Leake, ...
Light: Science & Applications 11 (1), 299, 2022
452022
Unexplored MBE growth mode reveals new properties of superconducting NbN
J Wright, C Chang, D Waters, F Lüpke, R Feenstra, L Raymond, ...
Physical Review Materials 5 (2), 024802, 2021
202021
Monolithic Passive− Active Integration of Epitaxially Grown Quantum Dot Lasers on Silicon
Z Zhang, C Shang, JC Norman, R Koscica, K Feng, JE Bowers
physica status solidi (a) 219 (4), 2100522, 2022
152022
Quantum Dot Lasers Directly Grown on 300 mm Si Wafers: Planar and In-Pocket
K Feng, C Shang, E Hughes, A Clark, R Koscica, P Ludewig, D Harame, ...
Photonics 10 (5), 534, 2023
102023
Heterogeneous integration of a III–V quantum dot laser on high thermal conductivity silicon carbide
R Koscica, Y Wan, W He, MJ Kennedy, JE Bowers
Optics Letters 48 (10), 2539-2542, 2023
82023
Energy and rf cavity phase symmetry enforcement in multiturn energy recovery linac models
R Koscica, N Banerjee, GH Hoffstaetter, W Lou, G Premawardhana
Physical Review Accelerators and Beams 22 (9), 091602, 2019
82019
Design Rules for Addressing Material Asymmetry Induced by Templated Epitaxy for Integrated Heteroepitaxial On‐Chip Light Sources
C Shang, ET Hughes, MR Begley, R Koscica, M Fouchier, K Feng, W He, ...
Advanced Functional Materials 33 (45), 2304645, 2023
42023
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
32024
1.3 μm High Performance Regrown Distributed Feedback Lasers Epitaxially Grown on Si
R Koscica, Y Wan, C Shang, AC Gossard, JE Bowers
2021 IEEE Photonics Conference (IPC), 1-2, 2021
12021
Quantum Dot Lasers: High Speed Evanescent Quantum‐Dot Lasers on Si (Laser Photonics Rev. 15 (8)/2021)
Y Wan, C Xiang, J Guo, R Koscica, MJ Kennedy, J Selvidge, Z Zhang, ...
Laser & Photonics Reviews 15 (8), 2170042, 2021
12021
Energy and RF Cavity Phase Symmetry Enforcement in Multi-turn ERL Models
R Koscica, N Banerjee, GH Hoffstaetter, W Lou, G Premawardhana
arXiv preprint arXiv:1904.04332, 2019
12019
On-Chip Monolithic Integration of QD Lasers Coupled to Foundry-Processed SiN Waveguides on 300 mm SOI Wafer
K Feng, R Koscica, C Shang, A Skipper, A Netherton, A Clark, P Ludewig, ...
2024 IEEE Silicon Photonics Conference (SiPhotonics), 1-2, 2024
2024
Impact of Pocket Geometry on Quantum Dot Lasers Grown on Silicon Wafers
R Koscica, C Shang, K Feng, ET Hughes, C Li, A Skipper, JE Bowers
Advanced Photonics Research 5 (3), 2300317, 2024
2024
Monolithic Passive− Active Integration of Epitaxially Grown Quantum Dot Lasers on Silicon
Z Zhang, C Shang, JC Norman, R Koscica, K Feng, JE Bowers
physica status solidi (a) 221 (2), 2470003, 2024
2024
Scalable on-chip lasers grown on 300 mm Si wafers
C Shang, K Feng, ET Hughes, A Clark, M Debnath, R Koscica, G Leake, ...
2023 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2023
2023
Scalable and high performance monolithic on-chip light sources for integrated silicon photonics
C Shang, K Feng, ET Hughes, A Clark, M Debnath, R Koscica, G Leake, ...
2023 IEEE Silicon Photonics Conference (SiPhotonics), 1-2, 2023
2023
Electrically Pumped Quantum-Dot Lasers Grown on CMOS-Compatible 300 mm Si Wafers
K Feng, C Shang, E Hughes, R Koscica, A Clark, M Debnath, G Leake, ...
2022 28th International Semiconductor Laser Conference (ISLC), 1-2, 2022
2022
Quantum-Dot Lasers Grown on CMOS-compatible 300 mm Si Photonic Wafers
K Feng, C Shang, E Hughes, R Koscica, A Clark, G Leake, D Harame, ...
2022 Compound Semiconductor Week (CSW), 1-2, 2022
2022
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