First-principles theory of the transition temperature in ferromagnetic metals: Application to iron
The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory...
Ausführliche Beschreibung
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1976 |
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Online-Ressource 4 |
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APS Digital Backfile Archive 1893-2003 |
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Enthalten in: Physical review / B - College Park, Md. : APS, 1970, 13(1976), 9, Seite 4198-4201 |
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volume:13 ; year:1976 ; number:9 ; pages:4198-4201 ; extent:4 |
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520 | |a The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. | ||
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(DE-627)NLEJ249635011 (DE-601)aps:22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 DE-627 ger DE-627 rakwb First-principles theory of the transition temperature in ferromagnetic metals: Application to iron 1976 Online-Ressource 4 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. APS Digital Backfile Archive 1893-2003 Ciobanu, G. oth Enthalten in Physical review / B College Park, Md. : APS, 1970 13(1976), 9, Seite 4198-4201 Online-Ressource (DE-627)NLEJ248237845 (DE-600)1473011-X 1550-235X nnns volume:13 year:1976 number:9 pages:4198-4201 extent:4 https://www.tib.eu/de/suchen/id/aps%3A22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 13 1976 9 4198-4201 4 |
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(DE-627)NLEJ249635011 (DE-601)aps:22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 DE-627 ger DE-627 rakwb First-principles theory of the transition temperature in ferromagnetic metals: Application to iron 1976 Online-Ressource 4 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. APS Digital Backfile Archive 1893-2003 Ciobanu, G. oth Enthalten in Physical review / B College Park, Md. : APS, 1970 13(1976), 9, Seite 4198-4201 Online-Ressource (DE-627)NLEJ248237845 (DE-600)1473011-X 1550-235X nnns volume:13 year:1976 number:9 pages:4198-4201 extent:4 https://www.tib.eu/de/suchen/id/aps%3A22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 13 1976 9 4198-4201 4 |
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(DE-627)NLEJ249635011 (DE-601)aps:22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 DE-627 ger DE-627 rakwb First-principles theory of the transition temperature in ferromagnetic metals: Application to iron 1976 Online-Ressource 4 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. APS Digital Backfile Archive 1893-2003 Ciobanu, G. oth Enthalten in Physical review / B College Park, Md. : APS, 1970 13(1976), 9, Seite 4198-4201 Online-Ressource (DE-627)NLEJ248237845 (DE-600)1473011-X 1550-235X nnns volume:13 year:1976 number:9 pages:4198-4201 extent:4 https://www.tib.eu/de/suchen/id/aps%3A22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 13 1976 9 4198-4201 4 |
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(DE-627)NLEJ249635011 (DE-601)aps:22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 DE-627 ger DE-627 rakwb First-principles theory of the transition temperature in ferromagnetic metals: Application to iron 1976 Online-Ressource 4 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. APS Digital Backfile Archive 1893-2003 Ciobanu, G. oth Enthalten in Physical review / B College Park, Md. : APS, 1970 13(1976), 9, Seite 4198-4201 Online-Ressource (DE-627)NLEJ248237845 (DE-600)1473011-X 1550-235X nnns volume:13 year:1976 number:9 pages:4198-4201 extent:4 https://www.tib.eu/de/suchen/id/aps%3A22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 13 1976 9 4198-4201 4 |
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(DE-627)NLEJ249635011 (DE-601)aps:22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 DE-627 ger DE-627 rakwb First-principles theory of the transition temperature in ferromagnetic metals: Application to iron 1976 Online-Ressource 4 Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. APS Digital Backfile Archive 1893-2003 Ciobanu, G. oth Enthalten in Physical review / B College Park, Md. : APS, 1970 13(1976), 9, Seite 4198-4201 Online-Ressource (DE-627)NLEJ248237845 (DE-600)1473011-X 1550-235X nnns volume:13 year:1976 number:9 pages:4198-4201 extent:4 https://www.tib.eu/de/suchen/id/aps%3A22b2cb89f282cd02e73e1ac6841ce27ec18d0a81 Verlag Deutschlandweit zugänglich GBV_USEFLAG_U ZDB-1-APS GBV_NL_ARTICLE AR 13 1976 9 4198-4201 4 |
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first-principles theory of the transition temperature in ferromagnetic metals: application to iron |
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First-principles theory of the transition temperature in ferromagnetic metals: Application to iron |
abstract |
The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. |
abstractGer |
The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. |
abstract_unstemmed |
The vertex-part theory developed in previous work for studying quantitatively the ferromagnetic transition temperatures Tc in actual metals, and applied earlier to cobalt, is used to obtain Tc for iron. The Fermi energy, density of states and wave functions for paramagnetic iron needed in the theory, were obtained by a first-principles procedure applied before to the ferromagnetic state of this metal and shown to give a good description of several experimental properties. The calculated transition temperature is lower than that for cobalt, as expected, and in good agreement with experiment. The sensitiveness of Tc to the Fermi energy, density of states (in particular the position of the peak in the density of states with respect to the Fermi energy) and the value of the pair matrix element are discussed. |
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First-principles theory of the transition temperature in ferromagnetic metals: Application to iron |
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