Nonextensive Contributions to the Effective Action of an Ensemble of Chemically Non-Interacting H2O Molecules Enclosed in the Cavity of Nanoscale SiO2 Pores = Неэкстенсивные вклады в эффективное действие ансамбля химически невзаимодействующих молекул H2O, заключенных в полости наноразмерных SIO2 пор / A. A. Lugovskoy, M. A. Shipulya
Уровень набора: Russian Physics JournalЯзык: английский.Резюме или реферат: The absorption spectra of water molecules enclosed in cavities of nanoscale silicon pores have been experimentally recorded. Experimental data have been interpreted within the framework of the approximation of absorption spectra by Gaussian-type contours. Experimental dependences of the intensity of these contours on the pore size are obtained. To interpret this dependence for the contour corresponding to chemically noninteracting particles, the mathematical apparatus of the analytical description of the thermodynamic ideal gas properties is used. The position of the extremes of the experimental curve is accurately described with the appropriate choice of the approximation parameter of the model under consideration..Примечания о наличии в документе библиографии/указателя: [References: 6 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | water vapor | silicon pores | effective action | nonextensive | contributions | low-dimensional systems Ресурсы он-лайн:Щелкните здесь для доступа в онлайнTitle screen
[References: 6 tit.]
The absorption spectra of water molecules enclosed in cavities of nanoscale silicon pores have been experimentally recorded. Experimental data have been interpreted within the framework of the approximation of absorption spectra by Gaussian-type contours. Experimental dependences of the intensity of these contours on the pore size are obtained. To interpret this dependence for the contour corresponding to chemically noninteracting particles, the mathematical apparatus of the analytical description of the thermodynamic ideal gas properties is used. The position of the extremes of the experimental curve is accurately described with the appropriate choice of the approximation parameter of the model under consideration.
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