DocumentCode
1233539
Title
Electrical characterization of AlN MIS and MIM structures
Author
Engelmark, Fredrik ; Westlinder, Jörgen ; Iriarte, Gonzalo Fuentes ; Katardjiev, Ilia V. ; Olsson, Jörgen
Author_Institution
Angstrom Lab., Uppsala Univ., Sweden
Volume
50
Issue
5
fYear
2003
fDate
5/1/2003 12:00:00 AM
Firstpage
1214
Lastpage
1219
Abstract
Aluminum nitride (AlN) thin films have been deposited on p-Si[100] and Mo-Si[100] substrates. The sputter deposited Mo was polycrystalline, predominantly showing a [110] orientation. Thin AlN films were grown under different process conditions in a physical vapor deposition (PVD) system to attain highly textured polycrystalline films as well as close to amorphous films. MIS and MIM structures were fabricated and electrical properties such as the dielectric constant, leakage current, and high-frequency behavior were investigated. It is found that the dielectric constant is 10 and does not change with the crystallinity of the films. High-frequency measurements up to 10 GHz show no frequency dispersion of the capacitance. The leakage current stays relatively constant between films and is believed to be Poole-Frenkel controlled. Capacitance-voltage (C-V) measurements for MIS structures revealed the presence of charges in the interface layer between the substrate and the dielectric film. The temperature dependence of the capacitance has also been studied.
Keywords
MIM devices; MIS devices; Poole-Frenkel effect; aluminium compounds; characteristics measurement; leakage currents; permittivity; sputter deposition; 10 GHz; AlN; AlN-Mo-Si; AlN-Si; MIM structures; MIS structures; Poole-Frenkel controlled. currents; capacitance-voltage measurements; dielectric constant; high-frequency behavior; leakage current; physical vapor deposition; polycrystalline films; Aluminum nitride; Capacitance measurement; Capacitance-voltage characteristics; Chemical vapor deposition; Dielectric constant; Dielectric measurements; Dielectric thin films; Leakage current; Sputtering; Substrates;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/TED.2003.813231
Filename
1210762
Link To Document