Band structure of Fe based superconductors / Teh Yee Lin

Several iron containing superconductors are discovered in 2008. The discovery introduced a new class of high-temperature superconductors, which are iron-based. The iron-based superconductors do not resemble conventional superconductors and have properties on their own which differ from the cuprates....

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Main Author: Teh, Yee Lin
Format: Thesis
Published: 2010
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spelling my.um.stud.43582014-09-30T02:01:01Z Band structure of Fe based superconductors / Teh Yee Lin Teh, Yee Lin Q Science (General) QC Physics Several iron containing superconductors are discovered in 2008. The discovery introduced a new class of high-temperature superconductors, which are iron-based. The iron-based superconductors do not resemble conventional superconductors and have properties on their own which differ from the cuprates. We have studied the iron selenium, FeSe compound by removing some Se atoms from the lattice forming Fe:Se = 2:1 and 8:6 and also by replacing the Se vacancy with tellurium, samarium and oxygen atoms forming Fe:Se:Te = 2:1:1 and 8:6:2, Fe:Se:O = 8:6:2 and 8:4:2, FeSeSmO, FeSeTeO, Fe2SeSm2O2, FeSeTeSmO and FeTeSmO. The band structures for each lattice are calculated by using the density-functional theory (DFT) in the local density approximation (LDA). The calculation is done by using polarized as well as unpolarised orbitals. The density of states (DOS) of each compound is also calculated. It is found that the gap is highly anisotropic. There is a pronounced effect on the energy gap upon removing some Se atoms from the lattice as well as substitution of other atoms into the FeSe lattice. The energy gap is reduced by a large amount of energy compared to the pure FeSe lattice. It was also found that the normal state gap also reduces upon oxidation. The normal state energy gap reduction produced by doping is related to the increase in the transition temperature of the superconductor. 2010 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/4358/1/M.Sc._Teh_Yee_Lin(pdf2).pdf http://pendeta.um.edu.my/client/default/search/detailnonmodal/ent:$002f$002fSD_ILS$002f796$002fSD_ILS:796938/one?qu=Band+structure+of+fe+based+superconductor Teh, Yee Lin (2010) Band structure of Fe based superconductors / Teh Yee Lin. Masters thesis, University of Malaya. http://studentsrepo.um.edu.my/4358/
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Student Repository
url_provider http://studentsrepo.um.edu.my/
topic Q Science (General)
QC Physics
spellingShingle Q Science (General)
QC Physics
Teh, Yee Lin
Band structure of Fe based superconductors / Teh Yee Lin
description Several iron containing superconductors are discovered in 2008. The discovery introduced a new class of high-temperature superconductors, which are iron-based. The iron-based superconductors do not resemble conventional superconductors and have properties on their own which differ from the cuprates. We have studied the iron selenium, FeSe compound by removing some Se atoms from the lattice forming Fe:Se = 2:1 and 8:6 and also by replacing the Se vacancy with tellurium, samarium and oxygen atoms forming Fe:Se:Te = 2:1:1 and 8:6:2, Fe:Se:O = 8:6:2 and 8:4:2, FeSeSmO, FeSeTeO, Fe2SeSm2O2, FeSeTeSmO and FeTeSmO. The band structures for each lattice are calculated by using the density-functional theory (DFT) in the local density approximation (LDA). The calculation is done by using polarized as well as unpolarised orbitals. The density of states (DOS) of each compound is also calculated. It is found that the gap is highly anisotropic. There is a pronounced effect on the energy gap upon removing some Se atoms from the lattice as well as substitution of other atoms into the FeSe lattice. The energy gap is reduced by a large amount of energy compared to the pure FeSe lattice. It was also found that the normal state gap also reduces upon oxidation. The normal state energy gap reduction produced by doping is related to the increase in the transition temperature of the superconductor.
format Thesis
author Teh, Yee Lin
author_facet Teh, Yee Lin
author_sort Teh, Yee Lin
title Band structure of Fe based superconductors / Teh Yee Lin
title_short Band structure of Fe based superconductors / Teh Yee Lin
title_full Band structure of Fe based superconductors / Teh Yee Lin
title_fullStr Band structure of Fe based superconductors / Teh Yee Lin
title_full_unstemmed Band structure of Fe based superconductors / Teh Yee Lin
title_sort band structure of fe based superconductors / teh yee lin
publishDate 2010
url http://studentsrepo.um.edu.my/4358/1/M.Sc._Teh_Yee_Lin(pdf2).pdf
http://pendeta.um.edu.my/client/default/search/detailnonmodal/ent:$002f$002fSD_ILS$002f796$002fSD_ILS:796938/one?qu=Band+structure+of+fe+based+superconductor
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score 13.209306