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THz Radiation Source Through Periodically Modulated Structures

Title: THz Radiation Source Through Periodically Modulated Structures
Authors: Gornik, Erich; Rauch, C.; Strasser, G.; Unterrainer, K.; Boxleitner, W.
Contributors: TECHNISCHE UNIV VIENNA (AUSTRIA) INST FUER FESTKOERPERELEKTRONIK
Source: DTIC AND NTIS
Publication Year: 1998
Collection: Defense Technical Information Center: DTIC Technical Reports database
Subject Terms: Electrical and Electronic Equipment; Plasma Physics and Magnetohydrodynamics; QUANTUM WELLS; PLASMA INSTABILITIES; ELECTRON DENSITY; TUNNELING(ELECTRONICS); ELECTRON EMISSION; AUSTRIA; PLASMA OSCILLATION; FOREIGN REPORTS; CARRIER INJECTION
Description: We have concentrated our activities in the present period to demonstrate the generation of a plasmon instability which could lead to coherent plasmon oscillations in quantum well structures due to population inversion in the carrier distribution. Population inversion is needed to develop the plasma instability. We use a concept where the inversion is achieved by using an energetically selective extraction and injection of carriers into a confined active region consisting of a combination of quantum wells. We have designed, build, and characterized a first generation of structures which show some first evidence for plasma instability. The measured I-V characteristics confirm the high quality of these samples and cannot be explained consistently with a transfer matrix calculation. We find that deviations from the expected tunneling behavior are found close to the condition of population inversion in the carrier distribution in sample g301. Weak THz emission is observed which might have its origin in a plasma instability process. However at present we cannot distinguish the emission process from radiative subband transitions.
Document Type: text
File Description: text/html
Language: English
Relation: http://www.dtic.mil/docs/citations/ADA348494
Availability: http://www.dtic.mil/docs/citations/ADA348494; http://oai.dtic.mil/oai/oai?&verb=getRecord&metadataPrefix=html&identifier=ADA348494
Rights: APPROVED FOR PUBLIC RELEASE
Accession Number: edsbas.8FAB985E
Database: BASE