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Investigation of the surface morphology and stacking fault nucleation on the (000-1)C facet of heavily nitrogen-doped 4H-SiC boules
by
Sato, Shinya
, Ohtani, Noboru
, Ohtomo, Kohei
, Fujimoto, Tatsuo
, Katsuno, Masakazu
, Ashida, Koji
, Kaneko, Tadaaki
, Matsumoto, Nana
, Tsuge, Hiroshi
in
4H-SiC
/ Atomic force microscopy
/ Boules
/ Crystals
/ Decision support systems
/ facet
/ heavy nitrogen doping
/ Microscopy
/ Morphology
/ Nitrogen
/ Nucleation
/ Silicon carbide
/ Stacking
/ stacking fault
/ Stacking faults
/ step structure
/ Surface morphology
2017
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Investigation of the surface morphology and stacking fault nucleation on the (000-1)C facet of heavily nitrogen-doped 4H-SiC boules
by
Sato, Shinya
, Ohtani, Noboru
, Ohtomo, Kohei
, Fujimoto, Tatsuo
, Katsuno, Masakazu
, Ashida, Koji
, Kaneko, Tadaaki
, Matsumoto, Nana
, Tsuge, Hiroshi
in
4H-SiC
/ Atomic force microscopy
/ Boules
/ Crystals
/ Decision support systems
/ facet
/ heavy nitrogen doping
/ Microscopy
/ Morphology
/ Nitrogen
/ Nucleation
/ Silicon carbide
/ Stacking
/ stacking fault
/ Stacking faults
/ step structure
/ Surface morphology
2017
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Investigation of the surface morphology and stacking fault nucleation on the (000-1)C facet of heavily nitrogen-doped 4H-SiC boules
by
Sato, Shinya
, Ohtani, Noboru
, Ohtomo, Kohei
, Fujimoto, Tatsuo
, Katsuno, Masakazu
, Ashida, Koji
, Kaneko, Tadaaki
, Matsumoto, Nana
, Tsuge, Hiroshi
in
4H-SiC
/ Atomic force microscopy
/ Boules
/ Crystals
/ Decision support systems
/ facet
/ heavy nitrogen doping
/ Microscopy
/ Morphology
/ Nitrogen
/ Nucleation
/ Silicon carbide
/ Stacking
/ stacking fault
/ Stacking faults
/ step structure
/ Surface morphology
2017
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Investigation of the surface morphology and stacking fault nucleation on the (000-1)C facet of heavily nitrogen-doped 4H-SiC boules
Conference Proceeding
Investigation of the surface morphology and stacking fault nucleation on the (000-1)C facet of heavily nitrogen-doped 4H-SiC boules
2017
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Overview
The stacking fault formation during physical vapor transport growth of heavily nitrogen-doped (mid-10 19 cm -3 ) 4H-SiC crystals was investigated. Low-voltage scanning electron microscopy (LVSEM) observations detected the stacking fault formation on the (000-1) facet of heavily nitrogen-doped 4H-SiC crystals. Stacking faults showed characteristic morphologies, and atomic force microscopy (AFM) studies revealed that these morphologies of stacking faults stemmed from the interaction between surface steps and stacking faults. Based on these results, the stacking fault formation mechanism in heavily nitrogen-doped 4H-SiC crystals is discussed.
Publisher
Trans Tech Publications Ltd
Subject
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