DocumentCode :
796894
Title :
Breakdown phenomena related to trapping/detrapping processes in wide band gap insulators
Author :
Le Gressus, C. ; Blaise, G.
Author_Institution :
CEA DSM, Saclay, France
Volume :
27
Issue :
3
fYear :
1992
fDate :
6/1/1992 12:00:00 AM
Firstpage :
472
Lastpage :
481
Abstract :
Mechanisms of breakdown phenomena related to charge carrier trapping and detrapping are investigated in wide band gap insulators. Trapping occurs in potential wells due to the presence of polarization charge at the border of domains having different permittivities and conductivities. Findings in this work are related to (1) the calculation of the polarization energy of the medium surrounding a trapped charge, (2) the investigation of the mechanism of space charge destabilization, and (3) the explanation of the breakdown mechanism from the polarization energy dissipation after detrapping. An experimental method to produce breakdowns is recalled. In this method electron trapping is produced under keV energy electron irradiation and the space charge destabilization is obtained under low energy electron irradiation. Depending on the experimental arrangement, the method makes it possible to produce flashover or bulk breakdown. The formation of a plasma, the melting of the sample, and the formation of treeing or thermal etched pits are observed
Keywords :
dielectric polarisation; dielectric properties of solids; electric breakdown of solids; electron traps; space charge; breakdown phenomena; bulk breakdown; charge carrier trapping; detrapping; electron irradiation; electron trapping; flashover; melting; plasma formation; polarization charge; polarization energy; potential wells; space charge destabilization; thermal etched pits; treeing; wide band gap insulators; Charge carriers; Conductivity; Electric breakdown; Electron traps; Insulation; Permittivity; Polarization; Potential well; Space charge; Wideband;
fLanguage :
English
Journal_Title :
Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9367
Type :
jour
DOI :
10.1109/14.142709
Filename :
142709
Link To Document :
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