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Cavity optomechanics in gallium phosphide microdisks

Optics 2014-05-30 v3 Mesoscale and Nanoscale Physics Quantum Physics

Abstract

We demonstrate gallium phosphide (GaP) microdisk optical cavities with intrinsic quality factors >2.8×105 > 2.8\times10^{5} and mode volumes <10(λ/n)3< 10 (\lambda/n)^3, and study their nonlinear and optomechanical properties. For optical intensities up to 8.0×1048.0\times10^4 intracavity photons, we observe optical loss in the microcavity to decrease with increasing intensity, indicating that saturable absorption sites are present in the GaP material, and that two-photon absorption is not significant. We observe optomechanical coupling between optical modes of the microdisk around 1.5 μ\mum and several mechanical resonances, and measure an optical spring effect consistent with a theoretically predicted optomechanical coupling rate g0/2π30g_0/2\pi \sim 30 kHz for the fundamental mechanical radial breathing mode at 488 MHz.

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Cite

@article{arxiv.1309.6300,
  title  = {Cavity optomechanics in gallium phosphide microdisks},
  author = {Matthew Mitchell and Aaron C. Hryciw and Paul E. Barclay},
  journal= {arXiv preprint arXiv:1309.6300},
  year   = {2014}
}

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R2 v1 2026-06-22T01:33:20.254Z