Abstract:
The microstructure and the magetoresistive characteristics of [NiFeCo/Cu]8 superlattices prepared by magnetron sputtering with various thickness of the buffer NiFeCr layer and exhibiting a giant magnetoresistive effect have been studied. It has been found that these nanostructures are formed with a strong or weak hysteresis depending on the structure (bcc or fcc) formed in the NiFeCr buffer layer. The method of the substantial decrease in the hysteresis loop width of the magnetoresistance by using the composite Ta/NiFeCr buffer layer has been suggested.
Citation:
N. S. Bannikova, M. A. Milyaev, L. I. Naumova, T. P. Krinitsina, E. I. Patrakov, V. V. Proglyado, T. A. Chernyshova, V. V. Ustinov, “NiFeCo/Cu superlattices with high magnetoresistive sensitivity and weak hysteresis”, Fizika Tverdogo Tela, 58:10 (2016), 1940–1946; Phys. Solid State, 58:10 (2016), 2011–2017
\Bibitem{BanMilNau16}
\by N.~S.~Bannikova, M.~A.~Milyaev, L.~I.~Naumova, T.~P.~Krinitsina, E.~I.~Patrakov, V.~V.~Proglyado, T.~A.~Chernyshova, V.~V.~Ustinov
\paper NiFeCo/Cu superlattices with high magnetoresistive sensitivity and weak hysteresis
\jour Fizika Tverdogo Tela
\yr 2016
\vol 58
\issue 10
\pages 1940--1946
\mathnet{http://mi.mathnet.ru/ftt9816}
\elib{https://elibrary.ru/item.asp?id=27368777}
\transl
\jour Phys. Solid State
\yr 2016
\vol 58
\issue 10
\pages 2011--2017
\crossref{https://doi.org/10.1134/S1063783416100061}
Linking options:
https://www.mathnet.ru/eng/ftt9816
https://www.mathnet.ru/eng/ftt/v58/i10/p1940
This publication is cited in the following 10 articles:
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I. A. Naidanov, M. A. Milyaev, V. V. Proglyado, V. V. Ustinov, “Structure and Magnetotransport Properties of Co77Fe17Ni6/Cu96In4 and Co77Fe17Ni6/Cu Multilayers with the Giant Magnetoresistance Effect”, Phys. Metals Metallogr., 125:8 (2024), 822
L. I. Naumova, R. S. Zavornitsyn, M. A. Milyaev, A. A. Germizina, I. K. Maksimova, T. A. Chernyshova, A. Yu. Pavlova, V. V. Proglyado, V. V. Ustinov, “Thermal and Spin-Orbital Effects under the Action of Current on Spin Valves Containing β-Ta and NiFeCr Alloy Layers”, Phys. Metals Metallogr., 125:12 (2024), 1309
M.A. Milyaev, N.S. Bannikova, L.I. Naumova, V.V. Proglyado, E.I. Patrakov, N.P. Glazunov, V.V. Ustinov, “Effective Co-rich ternary CoFeNi alloys for spintronics application”, Journal of Alloys and Compounds, 854 (2021), 157171
L. I. Naumova, M. A. Milyaev, R. S. Zavornitsin, A. Yu. Pavlova, I. K. Maksimova, T. P. Krinitsina, T. A. Chernyshova, V. V. Proglyado, V. V. Ustinov, “High-Sensitive Sensing Elements Based on Spin Valves with Antiferromagnetic Interlayer Coupling”, Phys. Metals Metallogr., 120:7 (2019), 653
M A Milyaev, L I Naumova, N S Bannikova, V V Proglyado, E I Patrakov, T P Krinitsina, V V Ustinov, “Microstructure and magnetoresistance of Co90Fe10/Cu and Co65Fe26Ni9/Cu multilayers”, J. Phys.: Conf. Ser., 1389:1 (2019), 012156
Mikhail Milyaev, Larisa Naumova, Vyacheslav Proglyado, Tatiana Krinitsina, Nataly Bannikova, Vladimir Ustinov, “High GMR Effect and Perfect Microstructure in CoFe/Cu Multilayers”, IEEE Trans. Magn., 55:4 (2019), 1
M. A. Milyaev, N. S. Bannikova, L. I. Naumova, V. V. Proglyado, E. I. Patrakov, I. Yu. Kamenskii, V. V. Ustinov, “Magnetoresistance of CoFeNi/Cu Superlattices Differing in the Ferromagnetic Alloy Composition”, Phys. Metals Metallogr., 120:9 (2019), 831
M. A. Milyaev, L. I. Naumova, V. V. Ustinov, “Exchange-Coupled Superlattices with Record Magnetoresistance”, Phys. Metals Metallogr., 119:12 (2018), 1162
N. S. Bannikova, M. A. Milyaev, L. I. Naumova, E. I. Patrakov, V. V. Proglyado, I. Yu. Kamenskii, M. V. Ryabukhina, V. V. Ustinov, “Giant Magnetoresistance and Hysteresis Phenomena in CoFe/Cu Superlattices with Highly Perfect Crystallographic Texture”, Phys. Metals Metallogr., 119:11 (2018), 1073