DocumentCode :
1139568
Title :
A complete set of normal modes in three-layered electron waveguides
Author :
Kaji, Ryosaku ; Koshiba, Masanori
Author_Institution :
Dept. of Electron. Eng., Hokkaido Univ., Sapporo, Japan
Volume :
30
Issue :
9
fYear :
1994
fDate :
9/1/1994 12:00:00 AM
Firstpage :
1971
Lastpage :
1980
Abstract :
Mathematical expressions are given for guided and radiation modes including nonpropagating parts in three-layered electron waveguides, in addition to gaining a clear understanding of the difference between electron and optical waveguides in terms of normal modes. According to the dispersion diagrams, it is shown that a complete set of normal modes for electron waveguides depends on the electron´s total energy and that in the quantum-well-type waveguide the discrete modes and the continuous modes radiating to one side of the film are reduced to nonpropagating modes in a certain energy range, whereas a complete set of normal modes for optical waveguides always consists of three types of modes: guided modes, substrate radiation modes, and substrate-cover radiation modes. In addition, the discrete modes and the continuous modes radiating to one side of the film are not reduced to nonpropagating modes in the entire range of frequencies. Also, it is shown that the guided modes always exist in electron waveguides composed of arbitrarily different Al-concentration ratios in the film, substrate, and cover regions, and a new waveguiding quantum-step-type structure, which utilizes the total reflection at both the potential rise and drop is proposed, whereas in optical waveguides, the guided modes exist only in the structure in which the refractive index of the film is higher than those of the substrate and of the cover
Keywords :
III-V semiconductors; aluminium compounds; dispersion (wave); gallium arsenide; semiconductor quantum wells; waveguide theory; GaAs-GaAlAs; arbitrarily different Al-concentration ratios; continuous modes; cover regions; discrete modes; dispersion diagrams; electron total energy; film; guided modes; mathematical expressions; nonpropagating parts; normal modes; quantum-well-type waveguide; radiation modes; substrate; three-layered electron waveguides; total reflection; waveguiding quantum-step-type structure; Electron optics; Frequency; Optical films; Optical reflection; Optical refraction; Optical variables control; Optical waveguide components; Optical waveguides; Quantum wells; Substrates;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.309855
Filename :
309855
Link To Document :
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