4.6 Article

Optomechanical properties of GaAs/AlAs micropillar resonators operating in the 18 GHz range

期刊

OPTICS EXPRESS
卷 25, 期 20, 页码 24437-24447

出版社

OPTICAL SOC AMER
DOI: 10.1364/OE.25.024437

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资金

  1. French National Research Agency (ANR), Investissements d'Avenir program (LabexNanoSaclay) [ANR-10-LABX-0035]
  2. French ANR [QDOM ANR-12-BS10-0010]
  3. ERC [277885, 715939, 306664]
  4. French RENATECH network
  5. ANPCyT [PICT 2012-1661, 2013-2047]
  6. International Franco-Argentinean Laboratory LIFAN (CNRS-CONICET)
  7. FP7 Marie Curie Fellowship OMSiQuD
  8. European Research Council (ERC) [277885, 715939, 306664] Funding Source: European Research Council (ERC)

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Recent experiments demonstrated that GaAs/AlAs based micropillar cavities are promising systems for quantum optomechanics, allowing the simultaneous three-dimensional confinement of near-infrared photons and acoustic phonons in the 18-100 GHz range. Here, we investigate through numerical simulations the optomechanical properties of this new platform. We evidence how the Poisson's ratio and semiconductor/vacuum boundary conditions lead to very distinct features in the mechanical and optical three-dimensional confinement. We find a strong dependence of the mechanical quality factor and strain distribution on the micropillar radius, in great contrast to what is predicted and observed in the optical domain. The derived optomechanical coupling constants g(0) reach ultra-large values in the 10(6) rad/s range. (C) 2017 Optical Society of America

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