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- Subterahertz hypersound attenuation in silica glass studied via picosecond acoustics doi link

Auteur(s): Ayrinhac Simon, Foret M.(Corresp.), Devos Arnaud, Ruffle B., Courtens E., Vacher R.

(Article) Publié: -Physical Review B Condensed Matter And Materials Physics (1998-2015), vol. 83 p.014204 (2011)
Texte intégral en Openaccess : openaccess


Ref HAL: hal-00567412_v1
DOI: 10.1103/PhysRevB.83.014204
WoS: 000286741100001
Exporter : BibTex | endNote
32 Citations
Résumé:

We report picosecond acoustic measurements in silica-glass films grown by wet thermal oxidation on a (111) silicon substrate. The longitudinal acoustic phonons are observed over the range from 150 to 300 GHz using an infrared pump and a second harmonic blue probe. The transducer is an aluminum thin film deposited on top. Multiple interference effects are analyzed and fully taken into account. They lead to a signal presenting rapid oscillations as a function of the sample thicknesses. The latter are determined by separate interferometry. Our remarkably precise acoustic attenuation results are found to follow rather well a model combining thermally activated relaxations and anharmonicity. New values for the optical absorption of silicon in the 400-to-500-nm region of the spectrum are obtained as a by-product.