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 | Veröffentlicht | Englisch
 
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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

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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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46 References

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AUTHOR UNKNOWN, 0
Spin caloritronics.
Bauer GE, Saitoh E, van Wees BJ., Nat Mater 11(5), 2012
PMID: 22522639

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Longitudinal spin Seebeck effect: from fundamentals to applications.
Uchida K, Ishida M, Kikkawa T, Kirihara A, Murakami T, Saitoh E., J Phys Condens Matter 26(34), 2014
PMID: 25105889
Spin-torque ferromagnetic resonance induced by the spin Hall effect.
Liu L, Moriyama T, Ralph DC, Buhrman RA., Phys. Rev. Lett. 106(3), 2011
PMID: 21405285
Spin-torque switching with the giant spin Hall effect of tantalum.
Liu L, Pai CF, Li Y, Tseng HW, Ralph DC, Buhrman RA., Science 336(6081), 2012
PMID: 22556245

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Transport magnetic proximity effects in platinum.
Huang SY, Fan X, Qu D, Chen YP, Wang WG, Wu J, Chen TY, Xiao JQ, Chien CL., Phys. Rev. Lett. 109(10), 2012
PMID: 23005323

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Thermoelectric Signal Enhancement by Reconciling the Spin Seebeck and Anomalous Nernst Effects in Ferromagnet/Non-magnet Multilayers.
Lee KD, Kim DJ, Yeon Lee H, Kim SH, Lee JH, Lee KM, Jeong JR, Lee KS, Song HS, Sohn JW, Shin SC, Park BG., Sci Rep 5(), 2015
PMID: 26020492

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Longitudinal spin Seebeck effect free from the proximity Nernst effect.
Kikkawa T, Uchida K, Shiomi Y, Qiu Z, Hou D, Tian D, Nakayama H, Jin XF, Saitoh E., Phys. Rev. Lett. 110(6), 2013
PMID: 23432302

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Magnetic reflectometry of heterostructures.
Macke S, Goering E., J Phys Condens Matter 26(36), 2014
PMID: 25121937
Static Magnetic Proximity Effect in Pt/NiFe2O4 and Pt/Fe Bilayers Investigated by X-Ray Resonant Magnetic Reflectivity.
Kuschel T, Klewe C, Schmalhorst JM, Bertram F, Kuschel O, Schemme T, Wollschlager J, Francoual S, Strempfer J, Gupta A, Meinert M, Gotz G, Meier D, Reiss G., Phys. Rev. Lett. 115(9), 2015
PMID: 26371679
The XMaS beamline at ESRF: instrumental developments and high-resolution diffraction studies.
Brown SD, Bouchenoire L, Bowyer D, Kervin J, Laundy D, Longfield MJ, Mannix D, Paul DF, Stunault A, Thompson P, Cooper MJ, Lucas CA, Stirling WG., J Synchrotron Radiat 8(Pt 6), 2001
PMID: 11679768
Performance of phase plates on the XMaS beamline at the ESRF.
Bouchenoire L, Brown SD, Thompson P, Duffy JA, Taylor JW, Cooper MJ., J Synchrotron Radiat 10(Pt 2), 2003
PMID: 12606796

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Transverse spin Seebeck effect versus anomalous and planar Nernst effects in Permalloy thin films.
Schmid M, Srichandan S, Meier D, Kuschel T, Schmalhorst JM, Vogel M, Reiss G, Strunk C, Back CH., Phys. Rev. Lett. 111(18), 2013
PMID: 24237554
Longitudinal spin Seebeck effect contribution in transverse spin Seebeck effect experiments in Pt/YIG and Pt/NFO.
Meier D, Reinhardt D, van Straaten M, Klewe C, Althammer M, Schreier M, Goennenwein STB, Gupta A, Schmid M, Back CH, Schmalhorst JM, Kuschel T, Reiss G., Nat Commun 6(), 2015
PMID: 26394541

AUTHOR UNKNOWN, 0
Intrinsic spin-dependent thermal transport.
Huang SY, Wang WG, Lee SF, Kwo J, Chien CL., Phys. Rev. Lett. 107(21), 2011
PMID: 22181905

AUTHOR UNKNOWN, 0
Longitudinal spin Seebeck coefficient: heat flux vs. temperature difference method.
Sola A, Bougiatioti P, Kuepferling M, Meier D, Reiss G, Pasquale M, Kuschel T, Basso V., Sci Rep 7(), 2017
PMID: 28440288

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
Quantitative separation of the anisotropic magnetothermopower and planar Nernst effect by the rotation of an in-plane thermal gradient.
Reimer O, Meier D, Bovender M, Helmich L, Dreessen JO, Krieft J, Shestakov AS, Back CH, Schmalhorst JM, Hutten A, Reiss G, Kuschel T., Sci Rep 7(), 2017
PMID: 28094279

AUTHOR UNKNOWN, 0
Electronic structure and optical band gap determination of NiFe2O4.
Meinert M, Reiss G., J Phys Condens Matter 26(11), 2014
PMID: 24589744

AUTHOR UNKNOWN, 0

AUTHOR UNKNOWN, 0
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Thermally induced spin currents
Kuschel T (2023)
Bielefeld: Universität Bielefeld.
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