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Dispersion engineered high-Q resonators on a chip

Yang, Ki Youl and Beha, Katja and Cole, Dan and Yi, Xu and Del’Haye, Pascal and Lee, Hansuek and Li, Jiang and Oh, Dong Yoon and Diddams, Scott A. and Papp, Scott B. and Vahala, Kerry J. (2016) Dispersion engineered high-Q resonators on a chip. In: 2016 Conference on Lasers and Electro-Optics (CLEO). IEEE , Piscataway, NJ, pp. 1-2. ISBN 978-1-943580-11-8.

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We demonstrate dispersion control in optical resonators over an octave of optical bandwidth. Dispersion is engineered lithographically and Q factor is maintained above 100 million, which is critical for efficient nonlinear devices such as microcombs.

Item Type:Book Section
Related URLs:
URLURL TypeDescription
Yang, Ki Youl0000-0002-0587-3201
Cole, Dan0000-0002-6360-1319
Yi, Xu0000-0002-2485-1104
Lee, Hansuek0000-0002-0748-7662
Oh, Dong Yoon0000-0001-6716-1851
Diddams, Scott A.0000-0002-2144-0764
Vahala, Kerry J.0000-0003-1783-1380
Additional Information:© 2016 Optical Society of America.
Subject Keywords:Optical resonators, Dispersion, Nonlinear optics, Optical device fabrication, Q-factor, Optical interferometry, Photonics
Classification Code:OCIS codes: (190.4380) Nonlinear optics, four-wave mixing; (230.5750) Resonators; (260.2030) Dispersion
Record Number:CaltechAUTHORS:20170110-103657367
Persistent URL:
Official Citation:K. Y. Yang, K. Beha, D. C. Cole, X. Yi, P. Del'Haye, H. Lee, J. Li, D. Y. Oh, S. A. Diddams, S. B. Papp, and K. J. Vahala, "Dispersion Engineered High-Q Resonators on a Chip," in Conference on Lasers and Electro-Optics, OSA Technical Digest (2016) (Optical Society of America, 2016), paper STu4Q.5
Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:73369
Deposited By: Tony Diaz
Deposited On:10 Jan 2017 19:01
Last Modified:11 Nov 2021 05:15

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