Localization of propagative phonons in a perfectly crystalline solid

Perfectly crystalline solids are excellent heat conductors. Prominent counterexamples are intermetallic clathrates, guest-host systems with a high potential for thermoelectric applications due to their ultralow thermal conductivities. Our combined experimental and theoretical investigation of the la...

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Veröffentlicht in:Physical review letters 2014-07, Vol.113 (2), p.025506-025506, Article 025506
Hauptverfasser: Pailhès, S, Euchner, H, Giordano, V M, Debord, R, Assy, A, Gomès, S, Bosak, A, Machon, D, Paschen, S, de Boissieu, M
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Sprache:eng
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Zusammenfassung:Perfectly crystalline solids are excellent heat conductors. Prominent counterexamples are intermetallic clathrates, guest-host systems with a high potential for thermoelectric applications due to their ultralow thermal conductivities. Our combined experimental and theoretical investigation of the lattice dynamics of a particularly simple binary representative, Ba(8)Si(46), identifies the mechanism responsible for the reduction of lattice thermal conductivity intrinsic to the perfect crystal structure. Above a critical wave vector, the purely harmonic guest-host interaction leads to a drastic transfer of spectral weight to the guest atoms, corresponding to a localization of the propagative phonons.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.113.025506