Structure and magnetotransport properties of multilayer Co77Fe17Ni6/Cu96In4 and Co77Fe17Ni6/Cu nanostructures with the giant magnetoresistance effect
- Авторлар: Naidanov I.A.1, Milyaev M.A.1, Proglyado V.V.1, Ustinov V.V.1
-
Мекемелер:
- Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences
- Шығарылым: Том 125, № 8 (2024)
- Беттер: 940-946
- Бөлім: ЭЛЕКТРИЧЕСКИЕ И МАГНИТНЫЕ СВОЙСТВА
- URL: https://innoscience.ru/0015-3230/article/view/682657
- DOI: https://doi.org/10.31857/S0015323024080038
- EDN: https://elibrary.ru/JWQSSA
- ID: 682657
Дәйексөз келтіру
Аннотация
Structural and magnetoresistive properties of multilayer Co77Fe17Ni6/Cu and Co77Fe17Ni6/Cu96In4 nanostructures with a number of magnetic layers and nonmagnetic interlayers of 1 to 11 are studied. The sharp axial ⟨111⟩ texture and more perfect interfaces are shown to form in the nanostructures with Cu96In4 interlayers, and a relatively small magnetoresistance hysteresis is observed. Atomic force microscopy is used to estimate the surface roughness and crystallite size of the samples under study. As the number of layers in the Cu96In4-based samples increases, the crystallite size is found to slightly change from layer to layer in a range of 18–22 nm, whereas, for the Cu-based sample, the crystallite size substantially increases. For superlattices with Cu interlayers, the 10-fold decrease in the magnetoresistance is observed as the thickness of Co77Fe17Ni6 layers slightly, namely, from 1.5 to 2 nm increases.
Негізгі сөздер
Авторлар туралы
I. Naidanov
Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences
Хат алмасуға жауапты Автор.
Email: naydenus@mail.ru
Ресей, Ekaterinburg, 620108
M. Milyaev
Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences
Email: naydenus@mail.ru
Ресей, Ekaterinburg, 620108
V. Proglyado
Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences
Email: naydenus@mail.ru
Ресей, Ekaterinburg, 620108
V. Ustinov
Mikheev Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences
Email: naydenus@mail.ru
Ресей, Ekaterinburg, 620108
Әдебиет тізімі
- Parker M.R., Hossain S., Seale D., Barnard J.A., Tan M., Fujiwara H. Low-field giant magnetoresistance in Co/Cu, CoFe/Cu and CoNiFe/Cu multilayer systems // IEEE Trans. on Magn. 1994. V. 30. № 2. P. 358–363.
- Hossain S., Seale D., Qiu G., Jarratt J., Barnard J.A., Fujiwara H., Parker M.R. Hysteresis reduction in NiFeCo/Cu multilayers exhibiting large low-field giant magnetoresistance // J. Appl. Phys. 1994. V. 75. № 10. P. 7067–7069.
- Milyaev M.A., Bannikova N.S., Naumova L.I., Proglyado V.V., Patrakov N.P., Glazunov N.P., Ustinov V.V. Effective Co-rich ternary CoFeNi alloys for spintronics application // J. Alloys Compounds 2021. V. 854. № 157171.
- Миляев М.А., Банникова Н.С., Наумова Л.И., Проглядо В.В., Патраков Е.И., Каменский И.Ю., Устинов В.В. Магнитосопротивление сверхрешеток CoFeNi/Cu с различным составом ферромагнитного сплава // ФММ. 2019. Т. 120. № 9. С. 905–912.
- Банникова Н.С., Миляев М.А., Наумова Л.И., Криницина Т.П., Патраков Е.И., Проглядо В.В., Чернышова Т.А., Устинов В.В. Сверхрешетки NiFeCo/Cu с высокой магниторезистивной чувствительностью и слабым гистерезисом // ФТТ. 2016. Т. 58. № 10. С. 1940–1946.
- Банникова Н.С., Миляев М.А., Наумова Л.И., Патраков Е.И., Проглядо В.В., Каменский И.Ю., Рябухина М.В., Устинов В.В. Гигантское магнитосопротивление и гистерезисные явления в сверхрешетках CoFe/Cu с высокосовершенной кристаллографической текстурой // ФММ. 2018. Т. 119. № 11. С. 1132–1137.
- Zou W., Wadley H.N.G., Zhou X.W., Johnson R.A. Composition-morphology-property relations for giant magnetoresistance multilayers grown by RF diode sputtering // J. Vac. Sci. Technol. 2001. V. 674. P. 2414–2419.
- Rafaja D., Ebert J., Miehe G., Martz G., Knapp M., Stahl B., Ghafari M., Hahn H., Fuess H., Schmollngruber P., Farber P., Siegle H. Changes in the real structure and magnetoresistance of Co90Fe10/Cu and Co90Fe10/Cu85Ag10Au5 multilayers after annealing // Thin Solid Films. 2004. V. 460. P. 256–263.
- Milyaev M.A., Naumova L.I., Proglyado V.V., Pavlova A.Yu., Makarova M.V., Patrakov E.I., Glazunov N.P., Ustinov V.V. Advantages of using Cu(1-x) Inx alloys as spacers in GMR multilayers // J. Alloys Compound. 2022. V. 917. № 165512.
- Imry Y., Ma S.-K. Random-field instability of the ordered state of continuous symmetry // Phys. Rev. Lett. 1975. V. 32. P. 1399–1401.
- Alben H., Becker H., Chi M.C. Random anisotropy in amorphous ferromagnets // J. Appl. Phys. 1978. V. 49. P. 1653–1658.
- Zhao Y.-P., Gamache R.M., Wang G.-C., Lu T.-M., Palasantzas G., De Hosson J.T.M. Effect of surface roughness on magnetic domain wall thickness, domain size, and coercivity // J. Appl. Phys. 2001. V. 89. № 2. P. 1325–1330.
- Verbeno C.H., Zazvorka J., Nowak J., Veis M. Magnetic coercivity control via buffer layer roughness in Pt/Co multilayers // J. Magn. Magn. Mater. 2023. V. 585. № 171124.
- Nakagawa S., Yoshikawa H. Effect of roughness and continuity of Co layers to magnetic properties of Co/Pd multilayers // J. Magn. Magn. Mater. 2005. V. 287. P. 193–198.
- Slonczewski J.C. Fluctuation Mechanism for Biquadratic Exchange Coupling in Magnetic Multilayers // Phys. Rev. Lett. 1991. V. 67. № 22. P. 3172–3175.
- Demokritov S., Tsymbal E., Grünberg P., Zinn W., Schuller I.K. Magnetic-dipole mechanism for biquadratic interlayer coupling // Phys. Rev. B. 1994. V. 49. № 1. P. 720–723.
Қосымша файлдар
