Effect of Hydrostatic Pressure and Temperature on Thermodynamic Properties of Electron Gas in Narrow Bandgap Semiconductor Nanowires

被引:0
|
作者
Davlatov, Abror [1 ]
Gulyamov, Gafur [2 ]
Feddi, Elmustapha [3 ]
Feddi, Kawtar [4 ]
Khalmirzaev, Akram [1 ]
Inoyatov, Shukurillo [1 ]
机构
[1] Namangan State Univ, 161 Boburshox, Namangan 160107, Uzbekistan
[2] Namangan Engn Construct Inst, 12 Islam Karimov, Namangan 160103, Uzbekistan
[3] Mohammed VI Polytech Univ, Inst Appl Phys, Lot 660, Hay Moulay Rachid Ben Gue 43150, Morocco
[4] Int Univ Rabat, Coll Engn & Architecture, Lab Renewable Energies & Adv Mat LERMA, Parc Technopolis, Sala Al Jadida 11103, Morocco
关键词
Semiconductor; Nanowires; Hydrostatic pressure; Concentration; Thermodynamic density of states; Entropy; Heat capacity; Chemical potential; DENSITY-OF-STATES; FERMI GAS; III-V; ENERGY; DEPENDENCE; ENTROPY; BEHAVIOR; SHAPE;
D O I
10.1007/s10909-024-03241-8
中图分类号
O59 [应用物理学];
学科分类号
摘要
In this work, the patterns of changes in concentration, density of thermodynamic states, thermodynamic potential, entropy and heat capacity of electron gas under the influence of hydrostatic pressure and temperature were studied in nanowires in the form of a rectangular potential well, obtained on the basis of semiconductors with narrow bandgaps. The patterns of changes in the effective mass, nonparabolicity coefficient and energy levels of electron gas in nanowires under the influence of temperature and hydrostatic pressure are determined. An increase in the steepness and a narrowing between turns of oscillation were determined on the graph of the dependence of the chemical potential on thermodynamic quantities in semiconductor nanowires with increasing hydrostatic pressure. The decrease in the steepness and the expansion between oscillation cycles on the graph of the dependence of the chemical potential on the thermodynamic properties of the semiconductor nanowires with increasing temperature were determined. The disappearance of oscillations at high temperatures and the observation of oscillations at low temperatures are shown on the graph of the dependence of thermodynamic values on the chemical potential. The dependence of the concentration, density of thermodynamic states, thermodynamic potential, entropy and heat capacity of the electron gas in InAs nanowires, on the chemical potential and the energy level mu<E-(N,E-L), mu=E-(N,E-L) and mu>E-(N,E-L) on the hydrostatic pressure and temperature are consistent.
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页码:166 / 192
页数:27
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