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Infrared-active phonon modes in single-crystal thorium dioxide and uranium dioxide

Knight, Sean (författare)
Univ Nebraska, NE 68588 USA
Korlacki, Rafal (författare)
Univ Nebraska, NE 68588 USA
Dugan, Christina (författare)
US Air Force, OH 45433 USA
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Petrosky, James C. (författare)
US Air Force, OH 45433 USA
Mock, Alyssa (författare)
Univ Nebraska, NE 68588 USA
Dowben, Peter A. (författare)
Univ Nebraska, NE 68588 USA
Matthew Mann, J. (författare)
US Air Force, OH 45433 USA
Kimani, Martin M. (författare)
US Air Force, OH 45433 USA; KBRwyle, OH 45431 USA
Schubert, Mathias (författare)
Linköpings universitet,Halvledarmaterial,Tekniska fakulteten,Univ Nebraska, NE 68588 USA; Leibniz Inst Polymer Res Dresden, Germany
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 (creator_code:org_t)
AMER INST PHYSICS, 2020
2020
Engelska.
Ingår i: Journal of Applied Physics. - : AMER INST PHYSICS. - 0021-8979 .- 1089-7550. ; 127:12
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The infrared-active phonon modes, in single-crystal samples of thorium dioxide (ThO2) and uranium dioxide (UO2), were investigated using spectroscopic ellipsometry and compared with density functional theory. Both ThO2 and UO2 are found to have one infrared-active phonon mode pair [consisting of one transverse optic (TO) and one associated longitudinal optic (LO) mode], which is responsible for the dominant features in the ellipsometric data. At room temperature, our results for the mode pairs resonant frequencies and broadening parameters are comparable with previous reflectance spectroscopy characterizations and density functional theory predictions. For ThO2, our ellipsometry and density function theory results both show that the LO mode broadening parameter is larger than the TO mode broadening. This signifies mode anharmonicity, which can be attributed to the intrinsic phonon-phonon interaction. In addition to the main mode pair, a broad low-amplitude impurity-like vibrational mode pair is detected within the reststrahlen band for both ThO2 and UO2. Elevated temperature measurements were performed for ThO2 in order to study the mechanisms by which the phonon parameters evolve with increased heat. The observed change in the TO resonant frequency is in excellent agreement with previous density functional calculations, which only consider volume expansion of the crystal lattice. This suggests that the temperature-dependent change in the TO frequency is primarily due to volume expansion. The change in the main mode pairs broadening parameters is nearly linear within the temperature range of this study, which indicates the intrinsic anharmonic scattering (via cubic anharmonicities) as the main decay mechanism. Published under license by AIP Publishing.

Ämnesord

NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

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