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Mechanical properties of non-centrosymmetric CePt3Si and CePt3B

  • G. Rogl (Korresp. Autor*in)
  • , Dominik Legut
  • , R. Sykora
  • , P. Mueller
  • , H. Mueller
  • , E. Bauer
  • , S. Puchegger
  • , M. Zehetbauer
  • , P. Rogl

Veröffentlichungen: Beitrag in FachzeitschriftArtikelPeer Reviewed

Abstract

Elastic moduli, hardness (both at room temperature) and thermal expansion (4.2-670 K) have been experimentally determined for polycrystalline CePt 3Si and its prototype compound CePt 3B as well as for single-crystalline CePt 3Si. Resonant ultrasound spectroscopy was used to determine elastic properties (Young's modulus E and Poisson's ratio ν) via the eigenfrequencies of the sample and the knowledge of sample mass and dimensions. Bulk and shear moduli were calculated from E and ν, and the respective Debye temperatures were derived. In addition, ab initio DFT calculations were carried out for both compounds. A comparison of parameters evaluated from DFT with those of experiments revealed, in general, satisfactory agreement. Positive and negative thermal expansion values obtained from CePt 3Si single crystal data are fairly well explained in terms of the crystalline electric field model, using CEF parameters derived recently from inelastic neutron scattering. DFT calculations, in addition, demonstrate that the atomic vibrations keep almost unaffected by the antisymmetric spin-orbit coupling present in systems with crystal structures having no inversion symmetry. This is opposite to electronic properties, where the antisymmetric spin-orbit interaction has shown to distinctly influence features like the superconducting condensate of CePt 3Si.

OriginalspracheEnglisch
Aufsatznummer185402
Seitenumfang9
FachzeitschriftJournal of Physics: Condensed Matter
Jahrgang29
Ausgabenummer18
DOIs
PublikationsstatusVeröffentlicht - 4 Apr. 2017

ÖFOS 2012

  • 104017 Physikalische Chemie
  • 104011 Materialchemie

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