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Optically Active Defects at the SiC/SiO2 Interface

delete2019-10-11
delete23
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OA
AI
B
Brett C. Johnson *
J
Judith Woerle
D
Daniel Haasmann
C
C. T.-K. Lew
R
R. Parker
H
Helena S. Knowles
B
Benjamin Pingault
M
Mete Atatüre
Á
Ádám Gali
S
Sima Dimitrijev
M
Massimo Camarda
J
Jeffrey C. McCallum
DOI:10.1103/PhysRevApplied.12.044024delete
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Abstract

Abstract

En 中文
The SiC/SiO2 interface is a central component of many SiC electronic devices. Defects intrinsic to this interface can have a profound effect on their operation and reliability. It is therefore crucial to both understand the nature of these defects and develop characterization methods to enable optimized SiC-based devices. Here we make use of confocal microscopy to address single SiC/SiO2-related defects and show the technique to be a noncontact, nondestructive, spatially resolved and rapid means of assessing thequality of the SiC/SiO2 interface. This is achieved by a systematic investigation of the defect density of the SiC/SiO2 interface by varying the parameters of a nitric oxide passivation anneal after oxidation. Standard capacitance-based characterization techniques are used to benchmark optical emission rates and densities of the optically active SiC/SiO2-related defects. Further insight into the nature of these defects is provided by low-temperature optical measurements on single defects.
Keywords:
SHALLOW ELECTRON TRAPS
SILICON-CARBIDE
STATE DENSITY
PASSIVATION
SIO2
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Journal

Physical Review Applied cover
Physical Review Applied
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4.4
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Hungarian Academy of Sciences
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ETH Zurich
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University of Cambridge
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swiss federal institutes of technology domain
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university of melbourne
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