Visible Photoluminescence from Cubic (3C) Silicon Carbide Microdisks Coupled to High Quality Whispering Gallery Modes

We present the design, fabrication, and characterization of cubic (3C) silicon carbide microdisk resonators with high quality factor modes at visible and near-infrared wavelengths (600–950 nm). Whispering gallery modes with quality factors as high as 2300 and corresponding mode volumes V ∼ 2 × (λ/n)...

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Published inACS photonics Vol. 2; no. 1; pp. 14 - 19
Main Authors Radulaski, Marina, Babinec, Thomas M, Müller, Kai, Lagoudakis, Konstantinos G, Zhang, Jingyuan Linda, Buckley, Sonia, Kelaita, Yousif A, Alassaad, Kassem, Ferro, Gabriel, Vučković, Jelena
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Published American Chemical Society 21.01.2015
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Abstract We present the design, fabrication, and characterization of cubic (3C) silicon carbide microdisk resonators with high quality factor modes at visible and near-infrared wavelengths (600–950 nm). Whispering gallery modes with quality factors as high as 2300 and corresponding mode volumes V ∼ 2 × (λ/n)3 are measured using laser scanning confocal microscopy at room temperature. We obtain excellent correspondence between transverse-magnetic (TM) and transverse-electric (TE) polarized resonances simulated using Finite Difference Time Domain (FDTD) method and those observed in experiment. These structures based on ensembles of optically active impurities in 3C-SiC resonators could play an important role in diverse applications of nonlinear and quantum photonics, including low power optical switching and quantum memories.
AbstractList We present the design, fabrication, and characterization of cubic (3C) silicon carbide microdisk resonators with high quality factor modes at visible and near-infrared wavelengths (600–950 nm). Whispering gallery modes with quality factors as high as 2300 and corresponding mode volumes V ∼ 2 × (λ/n)3 are measured using laser scanning confocal microscopy at room temperature. We obtain excellent correspondence between transverse-magnetic (TM) and transverse-electric (TE) polarized resonances simulated using Finite Difference Time Domain (FDTD) method and those observed in experiment. These structures based on ensembles of optically active impurities in 3C-SiC resonators could play an important role in diverse applications of nonlinear and quantum photonics, including low power optical switching and quantum memories.
We present the design, fabrication, and characterization of cubic (3C) silicon carbide microdisk resonators with high quality factor modes at visible and near-infrared wavelengths (600–950 nm). Whispering gallery modes with quality factors as high as 2300 and corresponding mode volumes V ∼ 2 × (λ/n)$^3$ are measured using laser scanning confocal microscopy at room temperature. We obtain excellent correspondence between transverse-magnetic (TM) and transverse-electric (TE) polarized resonances simulated using Finite Difference Time Domain (FDTD) method and those observed in experiment. These structures based on ensembles of optically active impurities in 3C-SiC resonators could play an important role in diverse applications of nonlinear and quantum photonics, including low power optical switching and quantum memories
Author Babinec, Thomas M
Lagoudakis, Konstantinos G
Buckley, Sonia
Alassaad, Kassem
Ferro, Gabriel
Müller, Kai
Kelaita, Yousif A
Zhang, Jingyuan Linda
Vučković, Jelena
Radulaski, Marina
AuthorAffiliation Universite de Lyon
Stanford University
Laboratorie des Multimateriaux et Interfaces
E. L. Ginzton Laboratory
AuthorAffiliation_xml – name: E. L. Ginzton Laboratory
– name: Universite de Lyon
– name: Laboratorie des Multimateriaux et Interfaces
– name: Stanford University
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  givenname: Marina
  surname: Radulaski
  fullname: Radulaski, Marina
  email: marina.radulaski@stanford.edu
– sequence: 2
  givenname: Thomas M
  surname: Babinec
  fullname: Babinec, Thomas M
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  givenname: Kai
  surname: Müller
  fullname: Müller, Kai
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  givenname: Konstantinos G
  surname: Lagoudakis
  fullname: Lagoudakis, Konstantinos G
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  surname: Zhang
  fullname: Zhang, Jingyuan Linda
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  surname: Vučković
  fullname: Vučković, Jelena
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Issue 1
Keywords cubic silicon carbide
photoluminescence
microdisks
whispering gallery modes
Language English
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Snippet We present the design, fabrication, and characterization of cubic (3C) silicon carbide microdisk resonators with high quality factor modes at visible and...
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SubjectTerms Condensed Matter
Engineering Sciences
Materials Science
Optics
Photonic
Physics
Title Visible Photoluminescence from Cubic (3C) Silicon Carbide Microdisks Coupled to High Quality Whispering Gallery Modes
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