Nonreciprocal Spin-Wave Dynamics in Crescent-Shaped Ferromagnetic Nanowires
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This dataset accompanies the publication "Nonreciprocal Spin-Wave Dynamics in Crescent-Shaped Ferromagnetic Nanowires" . Recent progress in the study of spin-wave propagation in ferromagnetic waveguides has highlighted the role of nonreciprocity arising from both the interfacial Dzyaloshinskii–Moriya interaction and the chiral nature of dipolar interactions. In this work, we examine how a nanowire with a crescent-shaped cross-section affects spin-wave propagation along its long axis when a bias magnetic field is applied perpendicular to the axis. Employing micromagnetic simulations supported by analytical modeling, we systematically analyze the effects of geometry and external magnetic field strength on the magnetization dynamics and spin-wave amplitude distribution. The results demonstrate that these factors modify the dispersion relation of spin waves and influence their nonreciprocity, which can vary depending on the mode type. This work advances the fundamental understanding of spin-wave dynamics in curved geometries and offers new perspectives for designing magnonic waveguides with tailored properties. The dataset includes TetraX simulation scripts, metadata files, and Jupyter notebooks used to generate all figures presented in the paper. Each figure folder contains both precomputed simulation results and corresponding scripts for data reproduction and visualization.



