Heterogeneous III-V / Si3N4 integration for scalable quantum photonic circuits
Heterogeneous III-V / Si3N4 integration for scalable quantum photonic circuits
We develop a scalable heterogeneous integration platform for quantum photonic circuits based on Si3N4 waveguides and on-chip, self-assembled InAs quantum dot-based single-photon sources. Hybrid waveguides, photonic crystals, and microring resonators are demonstrated.
Davanco, M.
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Liu, J.
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Sapienza, L.
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Zhang, C.-Z.
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De Miranda Cardoso, J.V.
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Verma, V.
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Mirin, R.
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Nam, S.W.
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Liu, L.
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Srinivasan, K.
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1 March 2017
Davanco, M.
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Liu, J.
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Sapienza, L.
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Zhang, C.-Z.
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De Miranda Cardoso, J.V.
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Verma, V.
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Mirin, R.
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Nam, S.W.
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Liu, L.
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Srinivasan, K.
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Davanco, M., Liu, J., Sapienza, L., Zhang, C.-Z., De Miranda Cardoso, J.V., Verma, V., Mirin, R., Nam, S.W., Liu, L. and Srinivasan, K.
(2017)
Heterogeneous III-V / Si3N4 integration for scalable quantum photonic circuits.
In Proceedings of the CLEO: Applications and Technology 2017.
Optica Publishing Group.
2 pp
.
(doi:10.1364/CLEO_AT.2017.JM4E.2).
Record type:
Conference or Workshop Item
(Paper)
Abstract
We develop a scalable heterogeneous integration platform for quantum photonic circuits based on Si3N4 waveguides and on-chip, self-assembled InAs quantum dot-based single-photon sources. Hybrid waveguides, photonic crystals, and microring resonators are demonstrated.
Text
Heterogeneous III-V / Si3N4 integration for scalable quantum photonic circuits
- Accepted Manuscript
More information
Published date: 1 March 2017
Venue - Dates:
CLEO USA 2017, , SAN JOSE, United States, 2017-05-14 - 2017-05-19
Organisations:
Quantum, Light & Matter Group
Identifiers
Local EPrints ID: 408460
URI: http://eprints.soton.ac.uk/id/eprint/408460
PURE UUID: 34ff74fd-a9d8-4cdb-9398-1a1e64f8d47e
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Date deposited: 20 May 2017 04:05
Last modified: 10 Apr 2024 17:03
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Contributors
Author:
M. Davanco
Author:
J. Liu
Author:
L. Sapienza
Author:
C.-Z. Zhang
Author:
J.V. De Miranda Cardoso
Author:
V. Verma
Author:
R. Mirin
Author:
S.W. Nam
Author:
L. Liu
Author:
K. Srinivasan
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