DocumentCode
3170332
Title
Field control in piezoelectric [111]-oriented InGaAs/GaAs MQW and superlattice devices
Author
Sánchez-Rojas, J.L. ; Munoz, E. ; Sacedon, A. ; Valtuena, J.F. ; Izpura, I. ; Calleja, E.
Author_Institution
ETSI Telecomunicacion, Univ. Politecnica de Madrid, Spain
fYear
1995
fDate
7-9 Aug 1995
Firstpage
506
Lastpage
515
Abstract
In [111]-oriented InGaAs/GaAs multiple quantum wells and superlattices, the field in the wells, barriers, and the average electric field, are deduced using simple analytical expressions. The influence of the design parameters on the conduction-band profile and optoelectronics properties of strained piezoelectric p-i-n diodes is presented. In samples with negative average electric field, transient photocurrent response and photocapacitance-voltage characteristics clearly reveal that carriers accumulate at the extremes of the active region, giving rise to a long-range screening effect of the field in the wells. Coupled quantum wells and piezoelectric superlattices have been studied by photocapacitance techniques, and the revealed features were explained as due to carrier sequential tunneling and accumulation processes
Keywords
III-V semiconductors; conduction bands; electric fields; gallium arsenide; indium compounds; p-i-n diodes; photocapacitance; photoconductivity; photoluminescence; piezoelectric semiconductors; semiconductor quantum wells; semiconductor superlattices; tunnelling; InGaAs-GaAs; InGaAs/GaAs MQW devices; InGaAs/GaAs superlattice devices; [111] orientation; average electric field; carrier accumulation; carrier sequential tunneling; conduction-band profile; coupled quantum wells; field control; long-range screening effect; optoelectronics properties; photocapacitance-voltage characteristics; photoluminescence spectra; piezoelectric superlattices; strained piezoelectric p-i-n diodes; transient photocurrent response; Gallium arsenide; Indium gallium arsenide; Interpolation; Optical devices; Optical sensors; P-i-n diodes; Piezoelectric devices; Quantum well devices; Substrates; Superlattices;
fLanguage
English
Publisher
ieee
Conference_Titel
High Speed Semiconductor Devices and Circuits, 1995. Proceedings., IEEE/Cornell Conference on Advanced Concepts in
Conference_Location
Ithaca, NY
ISSN
1079-4700
Print_ISBN
0-7803-3970-3
Type
conf
DOI
10.1109/CORNEL.1995.482547
Filename
482547
Link To Document