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Hamza Raniwala
Hamza Raniwala
Research Laboratory of Electronics, MIT
在 mit.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Optically heralded entanglement of superconducting systems in quantum networks
S Krastanov, H Raniwala, J Holzgrafe, K Jacobs, M Lončar, MJ Reagor, ...
Physical Review Letters 127 (4), 040503, 2021
632021
A spin-optomechanical quantum interface enabled by an ultrasmall mechanical and optical mode volume cavity
H Raniwala, S Krastanov, M Eichenfield, D Englund
arXiv preprint arXiv:2202.06999, 2022
142022
Cavity-enhanced single artificial atoms in silicon
V Saggio, C Errando-Herranz, S Gyger, C Panuski, M Prabhu, L De Santis, ...
Nature Communications 15 (1), 5296, 2024
112024
Scalable photonic integrated circuits for high-fidelity light control
AJ Menssen, A Hermans, I Christen, T Propson, C Li, AJ Leenheer, ...
Optica 10 (10), 1366-1372, 2023
102023
Nanoelectromechanical control of spin–photon interfaces in a hybrid quantum system on chip
G Clark, H Raniwala, M Koppa, K Chen, A Leenheer, M Zimmermann, ...
Nano Letters 24 (4), 1316-1323, 2024
92024
Field programmable spin arrays for scalable quantum repeaters
H Wang, ME Trusheim, L Kim, H Raniwala, DR Englund
Nature Communications 14 (1), 704, 2023
92023
Scalable photonic integrated circuits for programmable control of atomic systems
AJ Menssen, A Hermans, I Christen, T Propson, C Li, AJ Leenheer, ...
arXiv preprint arXiv:2210.03100, 2022
92022
Selective and scalable control of spin quantum memories in a photonic circuit
DA Golter, G Clark, T El Dandachi, S Krastanov, AJ Leenheer, NH Wan, ...
Nano Letters 23 (17), 7852-7858, 2023
82023
Multiplexed control of spin quantum memories in a photonic circuit
DA Golter, G Clark, TE Dandachi, S Krastanov, AJ Leenheer, NH Wan, ...
arXiv preprint arXiv:2209.11853, 2022
52022
Spin-phonon-photon strong coupling in a piezomechanical nanocavity
H Raniwala, S Krastanov, L Hackett, M Eichenfield, DR Englund, ...
arXiv preprint arXiv:2202.11291, 2022
52022
Cavity-Enhanced Single Artificial Atoms in Silicon.(2023)
V Saggio, C Errando-Herranz, S Gyger, C Panuski, M Prabhu, L De Santis, ...
arXiv preprint arXiv:2302.10230, 0
5
Piezoelectric nanocavity interface for strong coupling between a superconducting circuit, phonon, and spin
H Raniwala, S Krastanov, L Hackett, M Eichenfield, DR Englund, ...
Physical Review Applied 19 (6), 064051, 2023
32023
Integrating nearly-indistinguishable quantum emitters onto a photonic interposer
H Raniwala, I Christen, KC Chen, D Starling, D Englund
2023 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2023
32023
Optically Heralded Entanglement of Superconducting Systems in Quantum Networks
DR Englund, SI Krastanov, H Raniwala
US Patent App. 17/496,833, 2022
32022
Integrated quantum memories at 1.3 k with tin-vacancy centers and photonic circuits
I Christen, H Raniwala, KC Chen, M Colangelo, L De Santis, ...
CLEO: Science and Innovations, SM1K. 6, 2023
22023
A scalable cavity-based spin–photon interface in a photonic integrated circuit
KC Chen, I Christen, H Raniwala, M Colangelo, L De Santis, K Shtyrkova, ...
Optica Quantum 2 (2), 124-132, 2024
12024
Scalable Photonic Integration of Long-Lived Tin-Vacancy Memories at 1.3 K
I Christen, H Raniwala, M Colangelo, K Chen, LDSL Li, Y Song, ...
Quantum 2.0, QM2A. 4, 2022
12022
Integrated quantum photonics with single color centers in silicon
M Prabhu, V Saggio, L De Santis, S Gyger, M Colangelo, I Christen, ...
Silicon Photonics XIX 12891, 38-40, 2024
2024
Towards mechanically mediated interference between tin vacancy centers in diamond
H Raniwala, I Christen, K Chen, D Starling, B Dixon, M Trusheim, ...
Bulletin of the American Physical Society, 2024
2024
Scaled photonic interfaces for quantum networking with tin-vacancy color centers
I Christen, H Raniwala, K Chen, D Starling, I Harris, M Colangelo, ...
Bulletin of the American Physical Society, 2024
2024
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