Anomalous-Nernst and anisotropic magnetoresistive heating in a lateral spin valve

We measured the anomalous-Nernst effect and anisotropic magnetoresistive heating in a lateral multiterminal Permalloy/Copper spin valve using all-electrical lock-in measurements. To interpret the results, a three-dimensional thermoelectric finite-element-model is developed. Using this model, we extr...

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Published inarXiv.org
Main Authors Slachter, A, Bakker, F L, van Wees, B J
Format Paper Journal Article
LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 16.03.2011
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Abstract We measured the anomalous-Nernst effect and anisotropic magnetoresistive heating in a lateral multiterminal Permalloy/Copper spin valve using all-electrical lock-in measurements. To interpret the results, a three-dimensional thermoelectric finite-element-model is developed. Using this model, we extract the heat profile which we use to determine the anomalous Nernst coefficient of Permalloy Rn=0.13 and also determine the maximum angle of theta=8 degrees of the magnetization prior to the switching process when an opposing non-collinear 10\(^{\circ}\) magnetic field is applied.
AbstractList We measured the anomalous-Nernst effect and anisotropic magnetoresistive heating in a lateral multiterminal Permalloy/Copper spin valve using all-electrical lock-in measurements. To interpret the results, a three-dimensional thermoelectric finite-element-model is developed. Using this model, we extract the heat profile which we use to determine the anomalous Nernst coefficient of Permalloy Rn=0.13 and also determine the maximum angle of theta=8 degrees of the magnetization prior to the switching process when an opposing non-collinear 10\(^{\circ}\) magnetic field is applied.
We measured the anomalous-Nernst effect and anisotropic magnetoresistive heating in a lateral multiterminal Permalloy/Copper spin valve using all-electrical lock-in measurements. To interpret the results, a three-dimensional thermoelectric finite-element-model is developed. Using this model, we extract the heat profile which we use to determine the anomalous Nernst coefficient of Permalloy Rn=0.13 and also determine the maximum angle of theta=8 degrees of the magnetization prior to the switching process when an opposing non-collinear 10$^{\circ}$ magnetic field is applied.
Author van Wees, B J
Bakker, F L
Slachter, A
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BackLink https://doi.org/10.48550/arXiv.1103.3305$$DView paper in arXiv
https://doi.org/10.1103/PhysRevB.84.020412$$DView published paper (Access to full text may be restricted)
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Snippet We measured the anomalous-Nernst effect and anisotropic magnetoresistive heating in a lateral multiterminal Permalloy/Copper spin valve using all-electrical...
We measured the anomalous-Nernst effect and anisotropic magnetoresistive heating in a lateral multiterminal Permalloy/Copper spin valve using all-electrical...
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SubjectTerms Anisotropy
Ferrous alloys
Finite element method
Heating
Magnetic alloys
Magnetoresistivity
Nernst-Ettingshausen effect
Physics - Mesoscale and Nanoscale Physics
Spin valves
Three dimensional models
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Title Anomalous-Nernst and anisotropic magnetoresistive heating in a lateral spin valve
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