Publikationen

Vibrational thermodynamics of Fe90Zr7B3 nanocrystalline alloy from nuclear inelastic scattering

Autor(en)
Svetoslav Stankov, Marcel Miglierini, A Chumakov, Ilya Sergueev, Y.Z. Yue, Bogdan Sepiol, P Svec, L. Hu, Rudolf Rüffer
Abstrakt

Recently we determined the iron-partial density of vibrational states (DOS) of nanocrystalline Fe90Zr7B3 (Nanoperm), synthesized by crystallization of an amorphous precursor, for various stages of nanocrystallization separating the DOS of the nanograins from that of the interfaces [S. Stankov, Y. Z. Yue, M. Miglierini, B. Sepiol, I. Sergueev, A. I. Chumakov, L. Hu, P. Svec, and R. Ruffer, Phys. Rev. Lett. 100, 235503 (2008)]. Here we present quantitative analysis of the evolution of various thermoelastic properties calculated from DOS such as mean-force constant, mean atomic displacement, vibrational entropy, and lattice specific heat as the material transforms from amorphous, through nanocrystalline, to fully crystallized state. The reported results shed new light on the previously observed anomalies in the vibrational thermodynamics of nanocrystalline materials.

Organisation(en)
Dynamik Kondensierter Systeme
Externe Organisation(en)
European Synchrotron Radiation Facility ESRF, Slovak University of Technology in Bratislava, Aalborg University (AAU), Komenius Universität
Journal
Physical Review B
Band
82
Anzahl der Seiten
8
ISSN
1098-0121
DOI
https://doi.org/10.1103/PhysRevB.82.144301
Publikationsdatum
2010
Peer-reviewed
Ja
ÖFOS 2012
1030 Physik, Astronomie
Link zum Portal
https://ucris.univie.ac.at/portal/de/publications/vibrational-thermodynamics-of-fe90zr7b3-nanocrystalline-alloy-from-nuclear-inelastic-scattering(84313809-0bc0-44ad-82c6-ffc033a0d96d).html