Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR

Kuschel T, Klewe C, Bougiatioti P, Kuschel O, Wollschlager J, Bouchenoire L, Brown SD, Schmalhorst J-M, Meier D, Reiss G (2016)
IEEE Transaction on Magnetics 52(7): 4500104.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Kuschel, TimoUniBi ; Klewe, ChristophUniBi; Bougiatioti, PanagiotaUniBi; Kuschel, Olga; Wollschlager, Joachim; Bouchenoire, Laurence; Brown, Simon D.; Schmalhorst, Jan-MichaelUniBi ; Meier, DanielUniBi ; Reiss, GünterUniBi
Abstract / Bemerkung
The longitudinal spin Seebeck effect is detected in sputter-deposited NiFe2O4 films using Pt as a spin detector and compared with the previously investigated NiFe2O4 films prepared by chemical vapor deposition. Anomalous Nernst effects induced by the magnetic proximity effect (MPE) in Pt can be excluded for the sputter-deposited NiFe2O4 films down to a certain limit, since X-ray resonant magnetic reflectivity measurements show no magnetic response down to a limit of 0.04 μB per Pt atom comparable with the case of the chemically deposited NiFe2O4 films. These differently prepared films have various thicknesses. Therefore, we further studied Pt/Fe reference samples with various Fe thicknesses and could confirm that the MPE is only induced by the interface properties of the magnetic material.
Erscheinungsjahr
2016
Zeitschriftentitel
IEEE Transaction on Magnetics
Band
52
Ausgabe
7
Art.-Nr.
4500104
ISSN
0018-9464, 1941-0069
Page URI
https://pub.uni-bielefeld.de/record/2904867

Zitieren

Kuschel T, Klewe C, Bougiatioti P, et al. Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR. IEEE Transaction on Magnetics. 2016;52(7): 4500104.
Kuschel, T., Klewe, C., Bougiatioti, P., Kuschel, O., Wollschlager, J., Bouchenoire, L., Brown, S. D., et al. (2016). Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR. IEEE Transaction on Magnetics, 52(7), 4500104. https://doi.org/10.1109/tmag.2015.2512040
Kuschel, Timo, Klewe, Christoph, Bougiatioti, Panagiota, Kuschel, Olga, Wollschlager, Joachim, Bouchenoire, Laurence, Brown, Simon D., Schmalhorst, Jan-Michael, Meier, Daniel, and Reiss, Günter. 2016. “Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR”. IEEE Transaction on Magnetics 52 (7): 4500104.
Kuschel, T., Klewe, C., Bougiatioti, P., Kuschel, O., Wollschlager, J., Bouchenoire, L., Brown, S. D., Schmalhorst, J. - M., Meier, D., and Reiss, G. (2016). Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR. IEEE Transaction on Magnetics 52:4500104.
Kuschel, T., et al., 2016. Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR. IEEE Transaction on Magnetics, 52(7): 4500104.
T. Kuschel, et al., “Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR”, IEEE Transaction on Magnetics, vol. 52, 2016, : 4500104.
Kuschel, T., Klewe, C., Bougiatioti, P., Kuschel, O., Wollschlager, J., Bouchenoire, L., Brown, S.D., Schmalhorst, J.-M., Meier, D., Reiss, G.: Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR. IEEE Transaction on Magnetics. 52, : 4500104 (2016).
Kuschel, Timo, Klewe, Christoph, Bougiatioti, Panagiota, Kuschel, Olga, Wollschlager, Joachim, Bouchenoire, Laurence, Brown, Simon D., Schmalhorst, Jan-Michael, Meier, Daniel, and Reiss, Günter. “Static Magnetic Proximity Effect in Pt Layers on Sputter-Deposited NiFe2O4 and on Fe of Various Thicknesses Investigated by XRMR”. IEEE Transaction on Magnetics 52.7 (2016): 4500104.

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Thermally induced spin currents
Kuschel T (2023)
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