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- W2039674933 abstract "We report kelvin- to millikelvin-temperature measurements of dissipation and frequency shift in megahertz-range resonators fabricated from ultrananocrystalline diamond. Frequency shift $ensuremath{delta}f/{f}_{0}$ and dissipation ${Q}^{ensuremath{-}1}$ demonstrate temperature dependence in the millikelvin range similar to that predicted by the glass model of tunneling two-level systems. The logarithmic temperature dependence of $ensuremath{delta}f/{f}_{0}$ is in good agreement with such models, which include phonon relaxation and phonon resonant absorption. Dissipation shows a weak power law, ${Q}^{ensuremath{-}1}ensuremath{propto}{T}^{1/3}$, followed by saturation at low temperature. A comparison of both the scaled frequency shift and dissipation in equivalent micromechanical structures made of single-crystal silicon and gallium arsenide indicates universality in the dynamical response." @default.
- W2039674933 created "2016-06-24" @default.
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- W2039674933 date "2009-03-23" @default.
- W2039674933 modified "2023-09-26" @default.
- W2039674933 title "Evidence of universality in the dynamical response of micromechanical diamond resonators at millikelvin temperatures" @default.
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- W2039674933 doi "https://doi.org/10.1103/physrevb.79.125424" @default.
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