Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction

Coexistence of superconductivity and ferromagnetism in a gapped graphene-based system (FS) is theoretically investigated. The center-of-mass momentum, P, of a Cooper pair in FS is found to be Psimilarity2Eex/similarityvF1-(m/EFS)2, where m, Eex, EFS are the rest mass energy of the Dirac electron, ex...

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Main Authors: Bumned Soodchomshom, Tang, I.-M., Rassmidara Hoonsawat
Other Authors: Mahidol University. International College.
Format: Article
Language:English
Published: 2015
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/10494
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spelling th-mahidol.104942023-04-12T15:23:34Z Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction Bumned Soodchomshom Tang, I.-M. Rassmidara Hoonsawat Mahidol University. International College. Ferromagnetic superconductor Gapped graphene Massive dirac electron Spintronics Switching effect Tunneling magnetoresistance Coexistence of superconductivity and ferromagnetism in a gapped graphene-based system (FS) is theoretically investigated. The center-of-mass momentum, P, of a Cooper pair in FS is found to be Psimilarity2Eex/similarityvF1-(m/EFS)2, where m, Eex, EFS are the rest mass energy of the Dirac electron, exchange energy and the Fermi energy in the superconductor FS, respectively. It is unlike the nature in a conventional FFLO state where Psimilarity2Eex/similarityvF. This work studies the magneto effect on the transport property of a F/(FS) junction where F is a ferromagnetic gapless graphene. In this work, FS is achieved by depositing a conventional ferromagnetic s-wave superconductor on the top of gapped graphene sheet. The Zeeman splitting in FS induces spin-dependent Andreev resonance. The conductances effected by both spin-dependent specular Andreev reflections and spin-dependent Andreev resonances are investigated. The interplay between the spin-dependent specular Andreev reflection in the F region and the spin-dependent Andreev resonance in the FS region causes a very large tunneling magnetoresistance |TMR|?3000% for mEFS, possibly valuable in the graphene-based spintronic devices. This is because of the coexistence of the superconductivity and ferromagnetism in FS and the relativistic nature of electrons in graphene. Theory of large tunneling magnetoresistance in a gapped.... Available from: https://www.researchgate.net/publication/243242956_Theory_of_large_tunneling_magnetoresistance_in_a_gapped_graphene-based_ferromagnetic_superconductor_FFS_junction [accessed Apr 02 2018].. 2015-08-20T08:36:58Z 2018-04-05T09:49:47Z 2015-08-20T08:36:58Z 2018-04-05T09:49:47Z 2015 2010 Article Physica C: Superconductivity and its Applications. Vol. 470, No. 7-8 (2010), 415-420 https://repository.li.mahidol.ac.th/handle/123456789/10494 eng Mahidol University ScienceDirect
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
language English
topic Ferromagnetic superconductor
Gapped graphene
Massive dirac electron
Spintronics
Switching effect
Tunneling magnetoresistance
spellingShingle Ferromagnetic superconductor
Gapped graphene
Massive dirac electron
Spintronics
Switching effect
Tunneling magnetoresistance
Bumned Soodchomshom
Tang, I.-M.
Rassmidara Hoonsawat
Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction
description Coexistence of superconductivity and ferromagnetism in a gapped graphene-based system (FS) is theoretically investigated. The center-of-mass momentum, P, of a Cooper pair in FS is found to be Psimilarity2Eex/similarityvF1-(m/EFS)2, where m, Eex, EFS are the rest mass energy of the Dirac electron, exchange energy and the Fermi energy in the superconductor FS, respectively. It is unlike the nature in a conventional FFLO state where Psimilarity2Eex/similarityvF. This work studies the magneto effect on the transport property of a F/(FS) junction where F is a ferromagnetic gapless graphene. In this work, FS is achieved by depositing a conventional ferromagnetic s-wave superconductor on the top of gapped graphene sheet. The Zeeman splitting in FS induces spin-dependent Andreev resonance. The conductances effected by both spin-dependent specular Andreev reflections and spin-dependent Andreev resonances are investigated. The interplay between the spin-dependent specular Andreev reflection in the F region and the spin-dependent Andreev resonance in the FS region causes a very large tunneling magnetoresistance |TMR|?3000% for mEFS, possibly valuable in the graphene-based spintronic devices. This is because of the coexistence of the superconductivity and ferromagnetism in FS and the relativistic nature of electrons in graphene. Theory of large tunneling magnetoresistance in a gapped.... Available from: https://www.researchgate.net/publication/243242956_Theory_of_large_tunneling_magnetoresistance_in_a_gapped_graphene-based_ferromagnetic_superconductor_FFS_junction [accessed Apr 02 2018]..
author2 Mahidol University. International College.
author_facet Mahidol University. International College.
Bumned Soodchomshom
Tang, I.-M.
Rassmidara Hoonsawat
format Article
author Bumned Soodchomshom
Tang, I.-M.
Rassmidara Hoonsawat
author_sort Bumned Soodchomshom
title Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction
title_short Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction
title_full Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction
title_fullStr Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction
title_full_unstemmed Theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor F/(FS) junction
title_sort theory of large tunneling magnetoresistance in a gapped graphene-based ferromagnetic superconductor f/(fs) junction
publishDate 2015
url https://repository.li.mahidol.ac.th/handle/123456789/10494
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