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February 9, 2026Journal of Applied Physics0 citations

Decoupling chiral energy and chiral damping contributions in domain wall dynamics via symmetry arguments

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DKD. K. KimSamsung (South Korea)

Key Points

  • To quantify the Dzyaloshinskii–Moriya interaction and chiral damping effects in domain wall dynamics.
  • Developed an experimental scheme to decouple symmetric and antisymmetric contributions.
  • Applied the method to as-grown magnetic films without microstructuring or current injection.
  • Utilized symmetry arguments to analyze domain wall behavior.
  • Successfully quantified both DMI and chiral damping contributions.
  • Demonstrated a novel approach differing from previous studies.
  • Indicated the effectiveness of the method in rapidly assessing chiral effects.

Abstract

Chirality has been extensively studied in magnetic materials lacking inversion symmetry due to its crucial role in spintronics. In this study, we present an experimental scheme to quantify both the Dzyaloshinskii–Moriya interaction (DMI), which imparts chirality to spin energy, and chiral damping, which introduces chirality into spin energy dissipation. The key principle of our approach, which differs from the previous studies, is the decoupling of the symmetric and antisymmetric components of chiral domain wall dynamics by exploiting the phenomenological mathematical properties of each contribution. Since our method is applicable to the as-grown magnetic films without any microstructuring or electric current injection, it offers a fast and simple route to quantify both the DMI and chiral damping.

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Cite This Study

D. K. Kim (2025) studied this question.

synapsesocial.com/papers/698979e9f0ec2af6756e7f37https://doi.org/10.1063/5.0286237
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