Resonant tunneling theory of planar quantum dot structures


Autoria(s): Xia JB; Li SS
Data(s)

2003

Resumo

The ballistic transport in the semiconductor, planar, circular quantum dot structures is studied theoretically. The transmission probabilities show apparent resonant tunneling peaks, which correspond to energies of bound states in the dot. By use of structures with different angles between the inject and exit channels, the resonant peaks can be identified very effectively. The perpendicular magnetic field has obvious effect on the energies of bound states in the quantum dot, and thus the resonant peaks. The treatment of the boundary conditions simplifies the problem to the solution of a set of linear algebraic equations. The theoretical results in this paper can be used to design planar resonant tunneling devices, whose resonant peaks are adjustable by the angle between the inject and exit channels and the applied magnetic field. The resonant tunneling in the circular dot structures can also be used to study the bound states in the absence and presence of magnetic field.

Identificador

http://ir.semi.ac.cn/handle/172111/11456

http://www.irgrid.ac.cn/handle/1471x/64698

Idioma(s)

英语

Fonte

Xia JB; Li SS .Resonant tunneling theory of planar quantum dot structures ,PHYSICAL REVIEW B,2003,68 (7):Art.No.075310

Palavras-Chave #半导体物理 #WAVE-GUIDES #SPECTROSCOPY #CONDUCTANCE #TRANSPORT #RINGS
Tipo

期刊论文