Oscillatory magneto-conductance in quantum waveguides with lateral multi-barrier structures


Autoria(s): Gu BY; Sheng WD; Wang J
Data(s)

1998

Resumo

The magneto-transport properties of a narrow quantum waveguide with lateral multibarrier modulation are investigated theoretically. It is found that the magnetoconductance as a function of Fermi energy or magnetic field exhibits square-wave-like oscillations. In the presence of magnetic field, the edge states are formed near each barrier and the boundaries. Therefore, the number of edge states increases with the number of lateral barriers, leading to the increase of the propagating modes. On the other hand, owing to the tunneling effect a pair of edge states around the barrier region with opposite moving directions may be coupled and formed a circulating localized state, leading to the quenching of the related propagating states. The resulting dispersion relation exhibits oscillation structures superimposed on the bulk Landau levels. These novel conductance characteristics may provide potential applications to the fabrication of new quantum devices.

Identificador

http://ir.semi.ac.cn/handle/172111/13228

http://www.irgrid.ac.cn/handle/1471x/65584

Idioma(s)

英语

Fonte

Gu BY; Sheng WD; Wang J .Oscillatory magneto-conductance in quantum waveguides with lateral multi-barrier structures ,INTERNATIONAL JOURNAL OF MODERN PHYSICS B,1998,12(6):653-661

Palavras-Chave #半导体物理 #ELECTRON-WAVE-GUIDE #WIRE SYSTEM #TRANSPORT #DEVICE #TRANSMISSION #COUPLER #FIELD #WELLS
Tipo

期刊论文