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Laser-Inscribed Diamond Waveguide Resonantly Coupled to Diamond Microsphere

Academic Article
Publication Date:
2020
abstract:
An all-diamond photonic circuit was implemented by integrating a diamond microsphere with a femtosecond-laser-written bulk diamond waveguide. The near surface waveguide was fabricated by exploiting the Type II fabrication method to achieve stress-induced waveguiding. Transverse electrically and transverse magnetically polarized light from a tunable laser operating in the near-infrared region was injected into the diamond waveguide, which when coupled to the diamond microsphere showed whispering-gallery modes with a spacing of 0.33 nm and high-quality factors of 105. By carefully engineering these high-quality factor resonances, and further exploiting the properties of existing nitrogen-vacancy centers in diamond microspheres and diamond waveguides in such configurations, it should be possible to realize filtering, sensing and nonlinear optical applications in integrated diamond photonics.
Iris type:
01.01 Articolo in rivista
Keywords:
laser
List of contributors:
BHARADWAJ SHIVAKUMAR, Vibhav; LE PHU, Thien; Giakoumaki, Argyri; Eaton, SHANE MICHAEL ADLER; Ramponi, Roberta
Authors of the University:
EATON SHANE MICHAEL ADLER
Handle:
https://iris.cnr.it/handle/20.500.14243/419625
Published in:
MOLECULES
Journal
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