classical oscillator
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2020 ◽  
Vol 128 (6) ◽  
pp. 746
Author(s):  
Г.А. Командин ◽  
О.Е. Породинков ◽  
В.С. Ноздрин ◽  
Г.Р. Мусина ◽  
Н.В. Черномырдин ◽  
...  

With a change in temperature, a-lactose monohydrate crystals undergo changes in the molecular structure due to dehydration and decay of intramolecular bonds. The transmission spectra of the pressed microcrystalline samples of a-lactose monohydrate were measured using terahertz pulsed spectroscopy in the temperature range of the existence of the solid phase 10 – 475 K. An analysis of the observed absorption lines using the classical oscillator model made it possible to reveal the complex temperature evolution of the eigenfreuencies of the resonances, as well as to determine the region of existence of response phase of a-lactose monohydrate. Data obtained can find practical application in various fields of terahertz optics, including pharmacology, food industry, analytical chemistry and biophotonics.


2019 ◽  
Vol 33 (11) ◽  
pp. 1950140 ◽  
Author(s):  
Won Sang Chung ◽  
Hassan Hassanabadi

In this paper, we find more possible distributions of superstatistics which are symmetric with respect to the global equilibrium inverse temperature. We consider the multilevel distribution with different weights and the case of continuous local inverse temperature. For these two cases, we discuss the classical oscillator problem and photon statistics.


2019 ◽  
Vol 126 (5) ◽  
pp. 596
Author(s):  
Г.А. Командин ◽  
А.А. Гавдуш ◽  
Ю.Г. Гончаров ◽  
О.Е. Породинков ◽  
В.С. Ноздрин ◽  
...  

AbstractUsing methods of infrared, terahertz, and submillimeter spectroscopy, experimental transmission and reflection spectra of α-lactose monohydrate have been obtained at room temperature in the frequency range from 5 to 5000 cm^–1. The experimental spectra of dense pressed tablets and powdered samples have been analyzed in terms of the model of a classical oscillator. Certain parameters of absorption bands of the resonant and quasi-relaxation types are markers by which components can be selected in heterogeneous pharmacological and organic preparations using the methods of coherent submillimeter and pulsed terahertz spectroscopy.


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