Nonreciprocal spin-wave dispersion in magnetic bilayers

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Chi tiết về thư mục
Xuất bản năm:arXiv.org (Dec 12, 2024), p. n/a
Tác giả chính: Heins, C
Tác giả khác: Iurchuk, V, Gladii, O, Körber, L, Kákay, A, Fassbender, J, Schultheiss, K, Schultheiss, H
Được phát hành:
Cornell University Library, arXiv.org
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Miêu tả
Bài tóm tắt:Nonreciprocal spin-wave propagation in bilayer ferromagnetic systems has attracted significant attention due to its potential to precisely quantify material parameters as well as for applications in magnonic logic and information processing. In this study we investigate the nonreciprocity of spin-wave dispersions in heterostructures consisting of two distinct ferromagnetic materials, focusing on the influence of saturation magnetization and thickness of the magnetic layers. We exploit Brillouin light scattering to confirm numerical calculations which are conducted with the finite element software TETRAX. An extensive numerical analysis reveals that the nonreciprocal behavior is strongly influenced by the changing material parameters, with asymmetry in the spin-wave propagation direction reaching several GHz under optimized conditions. Our findings demonstrate that tailoring the bilayer composition enables precise control over nonreciprocity, providing a pathway for engineering efficient unidirectional spin-wave devices. These results offer a deeper understanding of hybrid ferromagnetic systems and open avenues for designing advanced magnonic circuits.
số ISSN:2331-8422
Nguồn:Engineering Database