DocumentCode
834964
Title
Radiation Effects in GaAs MIS Schotiky Diodes
Author
Ashok, S. ; Borrego, J.M. ; Gutmann, R.J.
Author_Institution
Electrical and Systems Engineering Department Rensselaer Polytechnic Institute Troy, New York 12181
Volume
25
Issue
6
fYear
1978
Firstpage
1473
Lastpage
1478
Abstract
The electrical characteristics of GaAs MIS Schottky barrier diodes using a thin (~60 Ã
) native oxide layer were evaluated before and after ionizing ¿-ray irradiation and fast-neutron irradiation. No change in electrical behavior could be observed with a Cobalt-60¿ - irradiation level as high as 1.5 à 107 rads (Si) absorbed dose. The MIS diodes together with reference MS diodes were progressively irradiated with neutrons from a fluence of 5 à 1013 n/cm2 to 8 à 1014 n/cm2. Carrier compensation in GaAs is negligible at these radiation levels, but significant changes were observed in I-V characteristics. The low-voltage forward I-V exhibited an appreciable increase in depletion region recombination current resulting from a decrease in carrier lifetime, while the diode ideality factor was found to increase at higher forward voltages. The reverse current showed orders of magnitude increase with irradiation, and its strong field dependence and relatively weak temperature dependence suggests field emission through traps as possible mechanism of current flow. The attenuation in reverse current caused by the oxide layer is seen to be reduced after neutron irradiation. Finally, the increase in reverse current is found to vary approximately in proportion to the neutron fluence. The implications of radiation results on practical devices are briefly discussed.
Keywords
Attenuation; Charge carrier lifetime; Electric variables; Gallium arsenide; Neutrons; Radiation effects; Schottky barriers; Schottky diodes; Temperature dependence; Voltage;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.1978.4329556
Filename
4329556
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