Abstract

It is shown that for a resonant magnetic field, the two cyclotron masses in a parabolic quantum dot are split into two cyclotron masses, respectively. The cyclotron mass decreases with decreasing the size of the quantum dot, the stronger the magnetic field strength, the larger the cyclotron mass. The lower branch of the cyclotron mass increases linearly with increasing the magnetic field strength. The upper branch of the cyclotron mass is larger than the bare band mass and enhances as the magnetic field strength increases.

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