Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers
Bougiatioti P, Klewe C, Meier D, Manos O, Kuschel O, Wollschläger J, Bouchenoire L, Brown SD, Schmalhorst J-M, Reiss G, Kuschel T (2017)
Physical Review Letters 119(22): 227205.
Zeitschriftenaufsatz
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Autor*in
Bougiatioti, PanagiotaUniBi;
Klewe, ChristophUniBi;
Meier, DanielUniBi ;
Manos, OrestisUniBi;
Kuschel, Olga;
Wollschläger, Joachim;
Bouchenoire, Laurence;
Brown, Simon D.;
Schmalhorst, Jan-MichaelUniBi ;
Reiss, GünterUniBi ;
Kuschel, TimoUniBi
Abstract / Bemerkung
We identify and investigate thermal spin transport phenomena in sputter-deposited Pt/NiFe2Ox (4≥x≥0) bilayers. We separate the voltage generated by the spin Seebeck effect from the anomalous Nernst effect (ANE) contributions and even disentangle the ANE in the ferromagnet (FM) from the ANE produced by the Pt that is spin polarized due to its proximity to the FM. Further, we probe the dependence of these effects on the electrical conductivity and the band gap energy of the FM film varying from nearly insulating NiFe2O4 to metallic Ni33Fe67. A proximity-induced ANE could only be identified in the metallic Pt/Ni33Fe67 bilayer in contrast to Pt/NiFe2Ox (x>0) samples. This is verified by the investigation of static magnetic proximity effects via x-ray resonant magnetic reflectivity.
Erscheinungsjahr
2017
Zeitschriftentitel
Physical Review Letters
Band
119
Ausgabe
22
Art.-Nr.
227205
ISSN
0031-9007, 1079-7114
Page URI
https://pub.uni-bielefeld.de/record/2915442
Zitieren
Bougiatioti P, Klewe C, Meier D, et al. Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers. Physical Review Letters. 2017;119(22): 227205.
Bougiatioti, P., Klewe, C., Meier, D., Manos, O., Kuschel, O., Wollschläger, J., Bouchenoire, L., et al. (2017). Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers. Physical Review Letters, 119(22), 227205. https://doi.org/10.1103/physrevlett.119.227205
Bougiatioti, Panagiota, Klewe, Christoph, Meier, Daniel, Manos, Orestis, Kuschel, Olga, Wollschläger, Joachim, Bouchenoire, Laurence, et al. 2017. “Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers”. Physical Review Letters 119 (22): 227205.
Bougiatioti, P., Klewe, C., Meier, D., Manos, O., Kuschel, O., Wollschläger, J., Bouchenoire, L., Brown, S. D., Schmalhorst, J. - M., Reiss, G., et al. (2017). Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers. Physical Review Letters 119:227205.
Bougiatioti, P., et al., 2017. Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers. Physical Review Letters, 119(22): 227205.
P. Bougiatioti, et al., “Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers”, Physical Review Letters, vol. 119, 2017, : 227205.
Bougiatioti, P., Klewe, C., Meier, D., Manos, O., Kuschel, O., Wollschläger, J., Bouchenoire, L., Brown, S.D., Schmalhorst, J.-M., Reiss, G., Kuschel, T.: Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers. Physical Review Letters. 119, : 227205 (2017).
Bougiatioti, Panagiota, Klewe, Christoph, Meier, Daniel, Manos, Orestis, Kuschel, Olga, Wollschläger, Joachim, Bouchenoire, Laurence, Brown, Simon D., Schmalhorst, Jan-Michael, Reiss, Günter, and Kuschel, Timo. “Quantitative Disentanglement of the Spin Seebeck, Proximity-Induced, and Ferromagnetic-Induced Anomalous Nernst Effect in Normal-Metal–Ferromagnet Bilayers”. Physical Review Letters 119.22 (2017): 227205.
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