The enhancement of low-temperature excitation of magnons via interlayer exchange coupling in perpendicularly magnetized [Co/Pd] multilayers

Author:

Kasiuk Julia1ORCID,Wu Wen-Bin2ORCID,Przewoźnik Janusz3ORCID,Kapusta Czesław3ORCID,Svito Ivan1ORCID,Nguyen Thanh Huong4ORCID,Do Khanh Tung4ORCID,Tran Dang Thanh4ORCID,Do Hung Manh4ORCID,Åkerman Johan5ORCID,Nguyen Thi Ngoc Anh46ORCID

Affiliation:

1. Faculty of Physics, Belarusian State University 1 , 4 Nezavisimosti Ave., Minsk 220030, Belarus

2. College of Physical Science and Technology, Dalian University 2 , Dalian 116622, China

3. Faculty of Physics and Applied Computer Science, Department of Solid State Physics 3 AGH University of Krakow, , 30 A. Mickiewicza Ave., Krakow 30-059, Poland

4. Institute of Materials Science, Vietnam Academy of Science and Technology 4 , 18 Hoang Quoc Viet, Cau Giay, Hanoi 11355, Vietnam

5. Department of Physics, University of Gothenburg 5 , Göteborg 41296, Sweden

6. Graduate University of Science and Technology, Vietnam Academy of Science and Technology 6 , 18 Hoang Quoc Viet, Cau Giay, Hanoi 11355, Vietnam

Abstract

In this study, we analyze the correlation between magnetization and magnetoresistance of perpendicularly anisotropic [Co/Pd] multilayered films with different thicknesses of Pd layers tPd = 0.6–2.0 nm in a wide range of temperatures, T = 4–300 K. We revealed that electron scattering by magnons makes a significant contribution to the magnetoresistance of the multilayers regardless of the layer thickness. Contrary to expectations, the effect of magnon magnetoresistance (MMR) increases with decreasing temperature below T = 50 K in the films with tPd = 0.8 and 1.0 nm. The revealed low-temperature MMR increase, which is most pronounced in the [Co0.5/Pd1.0] multilayers, is associated with the enhanced magnon excitation due to antiferromagnetic exchange coupling between the Co layers. The latter ensures an atypical shape of the magnetization curves of the [Co0.5/Pd1.0] multilayers at low temperatures in a perpendicular magnetic field, which combine a quadratic hysteresis loop of a perpendicularly anisotropic ferromagnet and an anomalous magnetization drop resulting from a violation of the ordering of magnetic moments and their amplified oscillations initiated by the interlayer exchange coupling.

Funder

Vietnam Academy of Science and Technology

Belarusian Republican Foundation for Fundamental Research

AGH University of Krakow

Publisher

AIP Publishing

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