Thermal conductivity of REIn3 (RE ≡ Tb, Dy, Tm, Lu) single crystals
Identifieur interne : 003481 ( Main/Curation ); précédent : 003480; suivant : 003482Thermal conductivity of REIn3 (RE ≡ Tb, Dy, Tm, Lu) single crystals
Auteurs : J. Mucha [Pologne] ; A. Jezowski ; A. Czopnik ; H. Misiorek ; Z. KletowskiSource :
- Journal of alloys and compounds [ 0925-8388 ] ; 1993.
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- Pascal (Inist)
English descriptors
- KwdEn :
Abstract
Some results of thermal conductivity measurements on REIn3 (RE≡Tb, Dy, Tm, Lu) single crystals over the temperature range 4-80 K are reported. On the basis of experimental data, an extraction of the magnetic contribution to the thermal conductivity was performed. In the antiferromagnetic state the thermal conductivities of TbIn3 and DyIn3 are dominated by magnons. In the paramagnetic state the thermal conductivities of both compounds increase nearly linearly with increasing temperature. Contrary to other analogous compounds the temperature dependence of the thermal conductivity of TmIn3 is more complex
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Pascal:93-0660483Le document en format XML
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(RE ≡ Tb, Dy, Tm, Lu) single crystals</title>
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<s2>50-950 Wrocław</s2>
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<term>Dysprosium Indides</term>
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<term>Lutetium Indides</term>
<term>Magnetic material</term>
<term>Single crystal</term>
<term>Temperature effect</term>
<term>Terbium Indides</term>
<term>Thermal conductivity</term>
<term>Thermal properties</term>
<term>Thulium Indides</term>
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<term>Dysprosium Indiure</term>
<term>Thulium Indiure</term>
<term>Lutétium Indiure</term>
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<front><div type="abstract" xml:lang="en">Some results of thermal conductivity measurements on REIn<sub>3</sub>
(RE≡Tb, Dy, Tm, Lu) single crystals over the temperature range 4-80 K are reported. On the basis of experimental data, an extraction of the magnetic contribution to the thermal conductivity was performed. In the antiferromagnetic state the thermal conductivities of TbIn<sub>3</sub>
and DyIn<sub>3</sub>
are dominated by magnons. In the paramagnetic state the thermal conductivities of both compounds increase nearly linearly with increasing temperature. Contrary to other analogous compounds the temperature dependence of the thermal conductivity of TmIn<sub>3</sub>
is more complex</div>
</front>
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