DocumentCode
3052853
Title
Electrical characterisation of Mg-related energy levels and compensation mechanism in Mg-doped GaN
Author
Seghier, D. ; Gislason, H.P.
Author_Institution
Sci. Inst., Iceland Univ., Reykjavik, Iceland
fYear
1998
fDate
1998
Firstpage
255
Lastpage
258
Abstract
Using admittance spectroscopy and optical deep-level transient spectroscopy (ODLTS) we investigate activation of acceptors in GaN:Mg samples induced by annealing. Conductance measurements reveal two peaks, H1 and H2, with activation energies 130 and 170 meV, respectively, from the valence band. The concentration of H1 is proportional to the acceptor concentration in the samples. Capacitance measurements show that H1, which we attribute to a Mg-related acceptor level, is the shallowest level in our samples. ODLTS spectra exhibit two electron traps at 0.28 and 0.58 eV from the conduction band. Their concentrations are too weak to influence the free carrier concentration. We conclude that compensation occurs through passivation of Mg acceptors by hydrogen, rather than self-compensation by new donor levels
Keywords
III-V semiconductors; capacitance; conduction bands; deep level transient spectroscopy; electrical conductivity; electron traps; gallium compounds; impurity states; magnesium; valence bands; wide band gap semiconductors; GaN:Mg; acceptor activation; acceptor concentration; acceptor passivation; admittance spectroscopy; annealing; capacitance; conductance; electron traps; optical deep-level transient spectroscopy; valence band; Admittance; Annealing; Capacitance; Conductivity; Energy states; Frequency; Gallium nitride; Hydrogen; Spectroscopy; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Semiconducting and Insulating Materials, 1998. (SIMC-X) Proceedings of the 10th Conference on
Conference_Location
Berkeley, CA
Print_ISBN
0-7803-4354-9
Type
conf
DOI
10.1109/SIM.1998.785119
Filename
785119
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