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Titlebook: Chirality, Magnetism and Magnetoelectricity; Separate Phenomena a Eugene Kamenetskii Book 2021 Springer Nature Switzerland AG 2021 Metamate

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0303-4216 ons from leading experts across twelve countries.Ties fundamThis book discusses theoretical and experimental advances in metamaterial structures, which are of fundamental importance to many applications in microwave and optical-wave physics and materials science. Metamaterial structures exhibit time
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Current-Induced Dynamics of Chiral Magnetic Structures: Creation, Motion, and Applications,es can also be moved by (electric) currents and obey very rich dynamics. For example, magnetic domain walls feature the famous Walker breakdown, and magnetic whirls are subject to the skyrmion Hall effect, which is rooted in their real-space topology. These properties led to a variety of potential novel applications which we briefly overview.
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https://doi.org/10.1007/978-3-031-70598-4of magnetic topological defects such as magnetic bubble domains, domain walls and vertical Bloch lines. As a new degree of freedom that can be controlled by electric and magnetic field, the chirality is an important issue for spintronic applications.
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https://doi.org/10.1007/978-3-031-38074-7r topological insulator in two-dimensional honeycomb lattice of massive magnetic skyrmions, and the second-order topological insulator in breathing kagome and honeycomb lattice of vortices. Conclusion and outlook are drawn finally.
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Kasi Azhakanandam,Zhanyuan J. Zhang we mainly present and discuss recent original results about the magnetization dynamics of antiferromagnetic skyrmions and bimerons excited by currents and spatially non-uniform magnetic anisotropy. In addition, we also explore possible applications based on antiferromagnetic skyrmions and bimerons, and review some relevant results.
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