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Energy and momentum relaxation of hot electrons in GaN/AlGaN

Date
2002
Author
Gokden, S
Shealy, RJ
Arikan, MC
Tilak, V
Schaff, B
Balkan, N
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Abstract
We report the experimental studies of hot-electron energy and momentum relaxation in the steady state in GaN/AlGaN HEMT structures with a high two-dimensional electron density of n = 1.5 x 10(13) cm(-2). From the LO-phonon-scattering-limited component of the mobility we obtain for the LO phonon the energy of homega similar to 90 meV and the momentum relaxation time of tau(m) similar to 4 fs. Drift velocity versus electric field characteristics obtained from the pulsed I-V measurements show that, at T-L = 77 K, the drift velocity saturates at upsilon(d) = 1.0 X 10(7) cm s(-1) at electric fields in excess of E similar to 7.5 kV cm(-1), and at T-L = 300 K it saturates at upsilon(d) similar to 5 x 10(6) cm s(-1), at an electric field of around E similar to 10 kV cm(-1). Electron temperature as a function of applied electric field is obtained by comparing the measured electric field dependence of the mobility mu(E) at a fixed lattice temperature, with the lattice temperature dependence of the mobility at a fixed low electric field. The electron energy loss rate is then determined from the electron temperature dependence of the power loss using the power balance equations. The effect of hot-phonon production on the observed momentum and energy relaxation of hot electrons is discussed within the framework of a theoretical model, which was originally developed for III-V material systems and has been adapted for a two-dimensional electron gas in GaN, and in which phonon drift is neglected.
URI
http://hdl.handle.net/20.500.12627/163112
https://doi.org/10.1088/0953-8984/14/13/305
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Creative Commons Lisansı

İstanbul Üniversitesi Akademik Arşiv Sistemi (ilgili içerikte aksi belirtilmediği sürece) Creative Commons Alıntı-GayriTicari-Türetilemez 4.0 Uluslararası Lisansı ile lisanslanmıştır.

DSpace software copyright © 2002-2016  DuraSpace
Contact Us | Send Feedback
Theme by 
Atmire NV