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Назва: Hysteresis of Low-Temperature Thermal Conductivity and Boson Peak in Glassy (g) As2S3: Nanocluster Contribution
Автори: Tkac, V.
Petretskij, S.
Ihnatolia, P.
Holomb, R.
Mitsa, V.
Міца, Володимир Михайлович
Ключові слова: Chalcogenide glass, Thermal conductivity, Low temperatures, Nanostructured semiconductors, Boson peak, Raman spectroscopy
Дата публікації: 2017
Видавництво: Nanoscale Research Letters
Бібліографічний опис: Nanoscale Research Letters. (2017) 12:345 DOI 10.1186/s11671-017-2125-6
Серія/номер: 12;345
Короткий огляд (реферат): Experimental results of the thermal conductivity (k(T)) of nanostructured g-As2S3 during cooling and heating processes within the temperature range from 2.5 to 100 K have been analysed. The paper has considered thermal conductivity is weakly temperature k(T) dependent from 2.5 to 100 K showing a plateau in region from 3.6 to 10. 7 K during both cooling and heating regimes. This paper is the first attempt to consider the k(T) hysteresis above plateau while heating in the range of temperature from 11 to 60 K. The results obtained have not been reported yet in the scientific literature. Differential curve Δk(T) of k(T) (heating k(T) curve minus cooling k(T) curve) possesses a complex asymmetric peak in the energy range from 1 to 10 meV. Δk(T) reproduces the density of states in a g(ω)/ω2 representation estimated from a boson peak experimentally obtained by Raman measurement within the range of low and room temperatures. Theoretical and experimental spectroscopic studies have confirmed a glassy structure of g-As2S3 in cluster approximation. The origin of the low-frequency excitations resulted from a rich variety of vibrational properties. The nanocluster vibrations can be created by disorder on atomic scale.
Опис: 7 K during both cooling and heating regimes. This paper is the first attempt to consider the k(T) hysteresis above plateau while heating in the range of temperature from 11 to 60 K. The results obtained have not been reported yet in the scientific literature. Differential curve Δk(T) of k(T) (heating k(T) curve minus cooling k(T) curve) possesses a complex asymmetric peak in the energy range from 1 to 10 meV. Δk(T) reproduces the density of states in a g(ω)/ω2 representation estimated from a boson peak experimentally obtained by Raman measurement within the range of low and room temperatures. Theoretical and experimental spectroscopic studies have confirmed a glassy structure of g-As2S3 in cluster approximation. The origin of the low-frequency excitations resulted from a rich variety of vibrational properties. The nanocluster vibrations can be created by disorder on atomic scale.
Тип: Text
Тип публікації: Стаття
URI (Уніфікований ідентифікатор ресурсу): https://dspace.uzhnu.edu.ua/jspui/handle/lib/15513
Розташовується у зібраннях:Наукові публікації кафедри інформатики та фізико-математичних дисциплін

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