DocumentCode
2940954
Title
Self-organization and pulsing in multiple quantum well structures excited by infrared radiation
Author
Ryzhii, M. ; Ryzhii, V. ; Suris, R. ; Hamaguchi, C.
Author_Institution
A.F. Ioffe Physicotech. Inst., Acad. of Sci., St. Petersburg, Russia
fYear
2000
fDate
10-15 Sept. 2000
Abstract
Summary form only given. We report ensemble Monte Carlo (MC) particle modeling of nonequilibrium phenomena in multiple quantum well (MQW) structures associated with their excitation by infrared radiation. It is assumed that QWs are uncoupled, so that the vertical transport, of electrons is due to their propagation in continuum states above the inter-well barriers. Such MQW structures are used in QW infrared photodetectors. The response of MQW structures to step-like pulses of high power infrared radiation at constant bias voltage and to step-like pulses of applied voltage at constant intensity of radiation is studied. We consider n-type Al/sub 0.22/Ga/sub 0.78/As-GaAs MQW structures with different numbers of identical doped QWs separated by relatively thick wide-gap undoped layers.
Keywords
III-V semiconductors; Monte Carlo methods; aluminium compounds; gallium arsenide; infrared detectors; self-adjusting systems; semiconductor quantum wells; Al/sub 0.22/Ga/sub 0.78/As-GaAs; IR excitation; MQW structures; QW IR photodetectors; constant bias voltage; continuum states; high power infrared radiation; identical doped QWs; infrared radiation; inter-well barriers; multiple quantum well structure; n-type Al/sub 0.22/Ga/sub 0.78/As-GaAs MQW structures; pulsing; relatively thick wide-gap undoped layers; self-organization; step-like pulses; vertical transport; Chaos; Gallium arsenide; Laser theory; Monte Carlo methods; Periodic structures; Photodetectors; Quantum well devices; Semiconductor lasers; Temperature; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Quantum Electronics Conference, 2000. Conference Digest. 2000 International
Conference_Location
Nice, France
Print_ISBN
0-7803-6318-3
Type
conf
DOI
10.1109/IQEC.2000.908100
Filename
908100
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