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Atomic Dynamics in Complex Metallic Alloys

Authors :
Marc de Boissieu
Ryuji Tamura
Franz Ritter
Daniel Schopf
Marek Mihalkovic
A. A. Haghighirad
Helmut Schober
Hans-Rainer Trebin
Stéphane Rols
Tsunetomo Yamada
Holger Euchner
Stéphane Pailhès
Wolf Assmus
Yuri Grin
Tsutomu Ishimasa
Silke Paschen
Lien Nguyen
Source :
MRS Proceedings. 1517
Publication Year :
2013
Publisher :
Springer Science and Business Media LLC, 2013.

Abstract

Complex Metallic Alloys (CMAs) are metallic solids of high structural complexity, consisting of large numbers of atoms in their unit cells. Consequences of this structural complexity are manifold and give rise to a variety of exciting physical properties. The impact that such structural complexity may have on the lattice dynamics will be discussed. The surprising dynamical flexibility of Tsai-type clusters with the symmetry breaking central tetrahedron will be addressed for Zn6Sc, while in the Ba-Ge-Ni clathrate system the dynamics of encaged Ba guest atoms in the surrounding Ge-Ni host framework is analysed with respect to the experimentally evidenced strong reduction of lattice thermal conductivity. For both systems experimental results from neutron scattering are analyzed and interpreted on atomistic scale by means of ab initio and molecular dynamics simulations, resulting in a picture with the respective structural building blocks as the origin of the peculiarities in the dynamics.

Details

ISSN :
19464274 and 02729172
Volume :
1517
Database :
OpenAIRE
Journal :
MRS Proceedings
Accession number :
edsair.doi...........60f45fb5ca70898282e911656217bc8c