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Sound attenuation and anharmonic damping in solids with correlated disorder

Vernadsky National Library of Ukraine

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Title Sound attenuation and anharmonic damping in solids with correlated disorder
 
Creator Schirmacher, W.
Tomaras, C.
Schmid, B.
Baldi, G.
Viliani, G.
Ruocco, G.
Scopigno, T.
 
Description We study via self-consistent Born approximation a model for sound waves in a disordered environment, in which the local fluctuations of the shear modulus G are spatially correlated with a certain correlation length ξ. The theory predicts an enhancement of the density of states over Debye's ω2 law (boson peak) whose intensity increases for increasing correlation length, and whose frequency position is shifted downwards as 1/ξ. Moreover, the predicted disorder-induced sound attenuation coefficient Γ(k) obeys a universal scaling law ξ Γ(k) = f(kξ) for a given variance of G. Finally, the inclusion of the lowest-order contribution to the anharmonic sound damping into the theory allows us to reconcile apparently contradictory recent experimental data in amorphous SiO2.
 
Date 2012-04-08T16:12:55Z
2012-04-08T16:12:55Z
2010
 
Type Article
 
Identifier Sound attenuation and anharmonic damping in solids with correlated disorder / W. Schirmacher, C. Tomaras, B. Schmid, G. Baldi, G. Viliani, G. Ruocco, T. Scopigno // Condensed Matter Physics. — 2010. — Т. 13, № 2. — С. 23606: 1-6. — Бібліогр.: 21 назв. — англ.
1607-324X
PACS: 63.50.-x, 43.20.+g, 65.60.+a
http://dspace.nbuv.gov.ua/handle/123456789/32096
 
Language en
 
Relation Condensed Matter Physics
 
Publisher Інститут фізики конденсованих систем НАН України