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Effective masses of...
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Iwata, H.P.Department of Physics and Measurement Technology, Linköping University
(author)
Effective masses of two-dimensional electron gases around cubic inclusions in hexagonal silicon carbide
- Article/chapterEnglish2003
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Numbers
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LIBRIS-ID:oai:DiVA.org:ltu-10928
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https://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-10928URI
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https://doi.org/10.1103/PhysRevB.68.245309DOI
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https://urn.kb.se/resolve?urn=urn:nbn:se:miun:diva-3458URI
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https://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-46293URI
Supplementary language notes
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Language:English
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Summary in:English
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Subject category:ref swepub-contenttype
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Subject category:art swepub-publicationtype
Notes
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Validerad; 2003; 20070216 (kani)
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The main purpose of this article is to determine the two-dimensional effective mass tensors of electrons confined in thin 3C wells in hexagonal SiC, which is a first step in the understanding of in-plane electron motion in the novel quantum structures. We have performed ab initio band structure calculations, based on the density functional theory in the local density approximation, for single and multiple stacking faults leading to thin 3C-like regions in 4H- and 6H-SiC and deduced electron effective masses for two-dimensional electron gases around the cubic inclusions. We have found that electrons confined in the thin 3C-like layers have clearly heavier effective masses than in the perfect bulk 3C-SiC single crystal.
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Lindefelt, UlfLinköpings universitet,Mittuniversitetet,Institutionen för informationsteknologi och medier (-2013),Department of Physics and Measurement Technology, Linköping University,Tekniska högskolan,Institutionen för fysik, kemi och biologi(Swepub:liu)ulfli35
(author)
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Öberg, SvenLuleå tekniska universitet,Matematiska vetenskaper(Swepub:ltu)oberg
(author)
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Briddon, P.H.Department of Physics, University of Newcastle
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Briddon, P.R
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Department of Physics and Measurement Technology, Linköping UniversityInstitutionen för informationsteknologi och medier (-2013)
(creator_code:org_t)
Related titles
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In:Physical Review B. Condensed Matter and Materials Physics68:24, s. 245309-11098-01211550-235X0163-1829
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