SIMULATION OF THE TEMPERATURE DEPENDENCE OF THE QUANTUM OSCILLATIONS’ EFFECTS IN 2D SEMICONDUCTOR MATERIALS

У. И. Эркабоев, R. G. Rakhimov, N. A. Sayidov, U.M. Negmatov

(2019) Яримўтказгичлар физикаси ва микроэлектроника журнали · 2021-yil

Annotatsiya

For the first time, a mathematical model was developed for determining the effect o f temperature and a quantizing magnetic field on oscillations o f the Fermi energy in nanoscale semiconductor structures with a parabolic dispersion law. A mathematical expression is derived for calculating the dependence o f the distribution o f the Fermi-Dirac function on the magnetic field, on the thickness o f the quantum well and on the temperature in low-dimensional semiconductor materials. The possibility o f calculating the Fermi energy oscillations in two-dimensional electron gases at high temperatures and weak magnetic fields is shown for the first time. The proposed theory explains the experimental results in two-dimensional semiconductor structures with a parabolic dispersion law.

Maqola ma’lumotlari
MualliflarУ. И. Эркабоев, R. G. Rakhimov, N. A. Sayidov, U.M. Negmatov
Jurnal(2019) Яримўтказгичлар физикаси ва микроэлектроника журнали
Nashr sanasi2021-02-28
Jild3
Son1
Betlar47-55
Tilen
DOI10.37681/2181-1652-019-x-2021-1-8

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