Ultrahigh Q whispering gallery mode electro-optic resonators on a silicon photonic chip

Crystalline whispering gallery mode (WGM) electro-optic resonators made of LiNbO and LiTaO are critical for a wide range of applications in nonlinear and quantum optics, as well as RF photonics, due to their remarkably ultrahigh Q(>10 ) and large electro-optic coefficient. Achieving efficient cou...

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Veröffentlicht in:Optics letters 2016-09, Vol.41 (18), p.4375-4378
Hauptverfasser: Soltani, Mohammad, Ilchenko, Vladimir, Matsko, Andrey, Savchenkov, Anatoliy, Schlafer, John, Ryan, Colm, Maleki, Lute
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Sprache:eng
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Zusammenfassung:Crystalline whispering gallery mode (WGM) electro-optic resonators made of LiNbO and LiTaO are critical for a wide range of applications in nonlinear and quantum optics, as well as RF photonics, due to their remarkably ultrahigh Q(>10 ) and large electro-optic coefficient. Achieving efficient coupling of these resonators to planar on-chip optical waveguides is essential for any high-yield and robust practical applications. However, it has been very challenging to demonstrate such coupling while preserving the ultrahigh Q properties of the resonators. Here, we show how the silicon photonic platform can overcome this long-standing challenge. Silicon waveguides with appropriate designs enable efficient and strong coupling to these WGM electro-optic resonators. We discuss various integration architectures of these resonators onto a silicon chip and experimentally demonstrate critical coupling of a planar Si waveguide and an ultrahigh QLiTaO resonator (Q∼10 ). Our results show a promising path for widespread and practical applications of these resonators on a silicon photonic platform.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.41.004375