Magnetization and electronic structure of FeAs layered material
Magnetic induction in the superconductor (B=H +4πM) in the zero field cooled samples (ZFC) is not equal to zero. Depending upon the chemical environment it has negative value in some and positive values in some others. In the field cooled samples, the magnetization becomes paramagnetic. We have calc...
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my.um.eprints.20732019-11-15T03:42:51Z http://eprints.um.edu.my/2073/ Magnetization and electronic structure of FeAs layered material Zabidi, Noriza Ahmad Kassim, Hasan Abu Shrivastava, Keshav N. Q Science (General) QC Physics Magnetic induction in the superconductor (B=H +4πM) in the zero field cooled samples (ZFC) is not equal to zero. Depending upon the chemical environment it has negative value in some and positive values in some others. In the field cooled samples, the magnetization becomes paramagnetic. We have calculated the band structure of one layer of FeAs lattice with spin polarized as well as unpolarized orbitais as a function of doping by Li atoms. For n number of Li atoms (n=0, 1,..., 4), we calculated the band gap at all of the k-points as well as the Fermi energy. The reduced normal state gap was found to lead to superconductivity. Penerbit Universiti Kebangsaan Malaysia 2011-02 Article PeerReviewed Zabidi, Noriza Ahmad and Kassim, Hasan Abu and Shrivastava, Keshav N. (2011) Magnetization and electronic structure of FeAs layered material. Sains Malaysiana, 40 (2). pp. 177-180. ISSN 0126-6039 http://www.ukm.my/jsm/pdf_files/SM-PDF-40-2-2011/14%20Noriza.pdf |
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Q Science (General) QC Physics Zabidi, Noriza Ahmad Kassim, Hasan Abu Shrivastava, Keshav N. Magnetization and electronic structure of FeAs layered material |
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Magnetic induction in the superconductor (B=H +4πM) in the zero field cooled samples (ZFC) is not equal to zero. Depending upon the chemical environment it has negative value in some and positive values in some others. In the field cooled samples, the magnetization becomes paramagnetic. We have calculated the band structure of one layer of FeAs lattice with spin polarized as well as unpolarized orbitais as a function of doping by Li atoms. For n number of Li atoms (n=0, 1,..., 4), we calculated the band gap at all of the k-points as well as the Fermi energy. The reduced normal state gap was found to lead to superconductivity. |
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Article |
author |
Zabidi, Noriza Ahmad Kassim, Hasan Abu Shrivastava, Keshav N. |
author_facet |
Zabidi, Noriza Ahmad Kassim, Hasan Abu Shrivastava, Keshav N. |
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Zabidi, Noriza Ahmad |
title |
Magnetization and electronic structure of FeAs layered material |
title_short |
Magnetization and electronic structure of FeAs layered material |
title_full |
Magnetization and electronic structure of FeAs layered material |
title_fullStr |
Magnetization and electronic structure of FeAs layered material |
title_full_unstemmed |
Magnetization and electronic structure of FeAs layered material |
title_sort |
magnetization and electronic structure of feas layered material |
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Penerbit Universiti Kebangsaan Malaysia |
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2011 |
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http://eprints.um.edu.my/2073/ http://www.ukm.my/jsm/pdf_files/SM-PDF-40-2-2011/14%20Noriza.pdf |
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