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author Blue, M. D.
spellingShingle Blue, M. D.
Journal of Applied Physics
Extraordinary Hall Effect in Paramagnetic Gold Alloys
General Physics and Astronomy
author_sort blue, m. d.
spelling Blue, M. D. 0021-8979 1089-7550 AIP Publishing General Physics and Astronomy http://dx.doi.org/10.1063/1.1728567 <jats:p>The Hall coefficient of alloys of up to 5% Ni, Co, Fe, and Mn in Au has been measured from 4.2°K to room temperature. The Hall coefficients are strongly temperature dependent in these alloys and have been fitted to an equation of the form R=R0+R1χ, where R0 is close to the value for the Hall coefficient of pure Au, and χ the magnetic susceptibility, is the source of most of the temperature dependence. Values for R1 are compared to the extraordinary coefficients of ferromagnetic metals.</jats:p> Extraordinary Hall Effect in Paramagnetic Gold Alloys Journal of Applied Physics
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title Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_unstemmed Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_full Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_fullStr Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_full_unstemmed Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_short Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_sort extraordinary hall effect in paramagnetic gold alloys
topic General Physics and Astronomy
url http://dx.doi.org/10.1063/1.1728567
publishDate 1962
physical 3060-3063
description <jats:p>The Hall coefficient of alloys of up to 5% Ni, Co, Fe, and Mn in Au has been measured from 4.2°K to room temperature. The Hall coefficients are strongly temperature dependent in these alloys and have been fitted to an equation of the form R=R0+R1χ, where R0 is close to the value for the Hall coefficient of pure Au, and χ the magnetic susceptibility, is the source of most of the temperature dependence. Values for R1 are compared to the extraordinary coefficients of ferromagnetic metals.</jats:p>
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author Blue, M. D.
author_facet Blue, M. D., Blue, M. D.
author_sort blue, m. d.
container_issue 10
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description <jats:p>The Hall coefficient of alloys of up to 5% Ni, Co, Fe, and Mn in Au has been measured from 4.2°K to room temperature. The Hall coefficients are strongly temperature dependent in these alloys and have been fitted to an equation of the form R=R0+R1χ, where R0 is close to the value for the Hall coefficient of pure Au, and χ the magnetic susceptibility, is the source of most of the temperature dependence. Values for R1 are compared to the extraordinary coefficients of ferromagnetic metals.</jats:p>
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spelling Blue, M. D. 0021-8979 1089-7550 AIP Publishing General Physics and Astronomy http://dx.doi.org/10.1063/1.1728567 <jats:p>The Hall coefficient of alloys of up to 5% Ni, Co, Fe, and Mn in Au has been measured from 4.2°K to room temperature. The Hall coefficients are strongly temperature dependent in these alloys and have been fitted to an equation of the form R=R0+R1χ, where R0 is close to the value for the Hall coefficient of pure Au, and χ the magnetic susceptibility, is the source of most of the temperature dependence. Values for R1 are compared to the extraordinary coefficients of ferromagnetic metals.</jats:p> Extraordinary Hall Effect in Paramagnetic Gold Alloys Journal of Applied Physics
spellingShingle Blue, M. D., Journal of Applied Physics, Extraordinary Hall Effect in Paramagnetic Gold Alloys, General Physics and Astronomy
title Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_full Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_fullStr Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_full_unstemmed Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_short Extraordinary Hall Effect in Paramagnetic Gold Alloys
title_sort extraordinary hall effect in paramagnetic gold alloys
title_unstemmed Extraordinary Hall Effect in Paramagnetic Gold Alloys
topic General Physics and Astronomy
url http://dx.doi.org/10.1063/1.1728567