Optical nonlinearities in high-confinement silicon carbide waveguides

We demonstrate strong nonlinearities of n2=8.6±1.1×10(-15)  cm2 W(-1) in single-crystal silicon carbide (SiC) at a wavelength of 2360 nm. We use a high-confinement SiC waveguide fabricated based on a high-temperature smart-cut process.

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Published inOptics letters Vol. 40; no. 17; p. 4138
Main Authors Cardenas, Jaime, Yu, Mengjie, Okawachi, Yoshitomo, Poitras, Carl B, Lau, Ryan K W, Dutt, Avik, Gaeta, Alexander L, Lipson, Michal
Format Journal Article
LanguageEnglish
Published United States 01.09.2015
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Abstract We demonstrate strong nonlinearities of n2=8.6±1.1×10(-15)  cm2 W(-1) in single-crystal silicon carbide (SiC) at a wavelength of 2360 nm. We use a high-confinement SiC waveguide fabricated based on a high-temperature smart-cut process.
AbstractList We demonstrate strong nonlinearities of n2=8.6±1.1×10(-15)  cm2 W(-1) in single-crystal silicon carbide (SiC) at a wavelength of 2360 nm. We use a high-confinement SiC waveguide fabricated based on a high-temperature smart-cut process.
Author Cardenas, Jaime
Lau, Ryan K W
Poitras, Carl B
Yu, Mengjie
Okawachi, Yoshitomo
Dutt, Avik
Gaeta, Alexander L
Lipson, Michal
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  surname: Cardenas
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  givenname: Alexander L
  surname: Gaeta
  fullname: Gaeta, Alexander L
– sequence: 8
  givenname: Michal
  surname: Lipson
  fullname: Lipson, Michal
BackLink https://www.ncbi.nlm.nih.gov/pubmed/26368731$$D View this record in MEDLINE/PubMed
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Snippet We demonstrate strong nonlinearities of n2=8.6±1.1×10(-15)  cm2 W(-1) in single-crystal silicon carbide (SiC) at a wavelength of 2360 nm. We use a...
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Title Optical nonlinearities in high-confinement silicon carbide waveguides
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