The behavior of thermal conductivity in the chaotic phase of [N(CH3)4]2ZnCl4 crystal

A thermal investigation of the modulated structure dynamics at the transition between metastable states in the incommensurate phase of [N(CH 3 ) 4 ] 2 ZnCl 4 crystal have been performed. It is established that the anomalous behavior of the thermal conductivity in the absence of a defect-density wave...

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Veröffentlicht in:Crystallography reports 2010-07, Vol.55 (4), p.652-656
Hauptverfasser: Sveleba, S. A., Karpa, I. V., Kunyo, I. M., Semotyuk, O. V., Katerynchuk, I. M., Phitsych, E. I., Pankivskyi, Yu. I.
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Sprache:eng
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Zusammenfassung:A thermal investigation of the modulated structure dynamics at the transition between metastable states in the incommensurate phase of [N(CH 3 ) 4 ] 2 ZnCl 4 crystal have been performed. It is established that the anomalous behavior of the thermal conductivity in the absence of a defect-density wave is due to the inelastic scattering of thermal phonons from critical phonons of the soft optical branch. In the presence of a defect-density wave, the anomalous increase in thermal conductivity is caused by the existence of a chaotic phase and is related to the contribution that soft optical phonons make to the heat transfer due to the increase in their group velocity.
ISSN:1063-7745
1562-689X
DOI:10.1134/S106377451004019X