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Theoretical investigations of resonant tunneling in asymmetric multibarrier semiconductor heterostructures in an applied constant electric field

Authors :
Shaune S. Allen
Steven L. Richardson
Source :
Physical Review B. 50:11693-11700
Publication Year :
1994
Publisher :
American Physical Society (APS), 1994.

Abstract

We solve the one-dimensional Schr\"odinger wave equation in the effective-mass approximation for the transmission coefficient T(E) of electrons through asymmetric multibarrier semiconductor heterostructures in the presence of a constant applied electric field, using an exact Airy-function formalism and the transfer-matrix technique. In particular, we show that for appropriate choices of asymmetry in the barrier widths and heights of the semiconductor heterostructure, the transmission coefficient is enhanced to yield resonances that are stronger than those calculated in symmetric structures, thus giving further validity to Mendez's concept of effective-barrier symmetry for obtaining optimal resonant tunneling in asymmetric double- and triple-barrier semiconductor heterostructures. These results should assist experimental efforts in designing resonant-tunneling systems that require optimum peaks both in the transmission spectrum and current density.

Details

ISSN :
10953795 and 01631829
Volume :
50
Database :
OpenAIRE
Journal :
Physical Review B
Accession number :
edsair.doi.dedup.....0229507e4a3b0ef7eb61fe6aa4deca79
Full Text :
https://doi.org/10.1103/physrevb.50.11693