Acceleration theorem for low-dimensional electron systems with off-diagonal effective-mass components

N Nobuya Mori (Division of Electrical, Electronic and Infocommunications Engineering, Osaka University , Suita, Osaka 565–0871,) H Hajime Tanaka J Jo Okada (Division of Electrical, Electronic and Infocommunications Engineering, Osaka University , Suita, Osaka 565–0871,)

Abstract

The motion of electrons under homogeneously applied electric fields in low-dimensional systems with non-zero off-diagonal effective mass (ODEM) is studied. The equation describing the time evolution of a probability coefficient of finding an electron in a subband is derived using the Krieger–Iafrate theory in the effective-mass approximation. It is shown that an electron can change subbands during free flight due to the ODEM-induced inter-subband transitions. By introducing an effective dispersion defined as a weighted average of the subband dispersions, it is also shown that the initial acceleration of an electron effectively follows the bulk dispersion relation. The results obtained suggest that the transport properties of the quantized systems when many subbands are occupied in the weak confinement limit approach the values one would find without considering the quantization.

Article Details

Volume / Issue Vol. 137, Issue 24
Published June 28, 2025
ISSN 0021-8979
Publisher American Institute of Physics

Journal Info

Journal of Applied Physics

American Institute of Physics

ISSN: 0021-8979 Physical Sciences

Authors (3)

N

Nobuya Mori

Division of Electrical, Electronic and Infocommunications Engineering, Osaka University , Suita, Osaka 565–0871,

H

Hajime Tanaka

J

Jo Okada

Division of Electrical, Electronic and Infocommunications Engineering, Osaka University , Suita, Osaka 565–0871,