EFFECT OF MAGNETIC FIELD AND TEMPERATURE ON THE DENSITY OF COMBINED STATES IN HETEROSTRUCTURES WITH QUANTUM WELL
In this work, the dependence of the combined state density oscillations on the strong magnetic field in heterostructures based
on rectangular quantum coils is studied. The influence of the quantizing magnetic field on the temperature of the combined
density of states in nanoscale real-field heterostructures is studied. A new mathematical model has been developed to
calculate the temperature dependence of the two-dimensional combined state density of quantum coils in quantizing magnetic
fields. The proposed model explains the experimental results in nanoscale, regular field, parabolic dispersion semiconductors.
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