57
IRUS Total
Downloads
  Altmetric

Anharmonicity in the high-temperature Cmcm phase of SnSe: soft modes and three-phonon interactions

File Description SizeFormat 
PhysRevLett.117.075502.pdfPublished version2.43 MBAdobe PDFView/Open
Title: Anharmonicity in the high-temperature Cmcm phase of SnSe: soft modes and three-phonon interactions
Authors: Skelton, JM
Burton, LA
Parker, SC
Walsh, A
Kim, C-E
Soon, A
Buckeridge, J
Sokol, AA
Catlow, CRA
Togo, A
Tanaka, I
Item Type: Journal Article
Abstract: The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We demonstrate, through a first-principles lattice-dynamics study, that the high-temperature Cmcm phase is a dynamic average over lower-symmetry minima separated by very small energetic barriers. Compared to the low-temperature Pnma phase, the Cmcm phase displays a phonon softening and enhanced three-phonon scattering, leading to an anharmonic damping of the low-frequency modes and hence the thermal transport. We develop a renormalization scheme to quantify the effect of the soft modes on the calculated properties, and confirm that the anharmonicity is an inherent feature of the Cmcm phase. These results suggest a design concept for thermal insulators and thermoelectric materials, based on displacive instabilities, and highlight the power of lattice-dynamics calculations for materials characterization.
Issue Date: 12-Aug-2016
Date of Acceptance: 13-Jan-2016
URI: http://hdl.handle.net/10044/1/41524
DOI: 10.1103/PhysRevLett.117.075502
ISSN: 0031-9007
Publisher: American Physical Society
Start Page: 075502-1
End Page: 075502-6
Journal / Book Title: Physical Review Letters
Volume: 117
Issue: 7
Copyright Statement: Published by the American Physical Society under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI.
Keywords: Science & Technology
Physical Sciences
Physics, Multidisciplinary
Physics
PERFORMANCE BULK THERMOELECTRICS
AUGMENTED-WAVE METHOD
LEAD CHALCOGENIDES
PBTE
Science & Technology
Physical Sciences
Physics, Multidisciplinary
Physics
PERFORMANCE BULK THERMOELECTRICS
AUGMENTED-WAVE METHOD
LEAD CHALCOGENIDES
PBTE
cond-mat.mtrl-sci
cond-mat.mtrl-sci
General Physics
01 Mathematical Sciences
02 Physical Sciences
09 Engineering
Publication Status: Published
Article Number: 075502
Online Publication Date: 2016-08-10
Appears in Collections:Materials
Faculty of Engineering