Tunable spin-wave nonreciprocity in ferrimagnetic domain-wall channels

Fuente: arXiv
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Main Authors: Liu, Tingting, Li, Shuhong, Liu, Yunlong, Qin, Shuchao, Liu, Yang, Wang, Wenjun, Qin, Minghui
Format: Preprint
Published: 2025
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_version_ 1866918106451935232
author Liu, Tingting
Li, Shuhong
Liu, Yunlong
Qin, Shuchao
Liu, Yang
Wang, Wenjun
Qin, Minghui
author_facet Liu, Tingting
Li, Shuhong
Liu, Yunlong
Qin, Shuchao
Liu, Yang
Wang, Wenjun
Qin, Minghui
contents The nonreciprocal propagation of spin waves (SWs) offers opportunities for developing novel functional magnonic logic devices, where controllability is crucial for magnetic signal processing. Domain walls act as natural waveguides due to their magnetic configuration, offering a platform for the in-depth investigation of nonreciprocal SW propagation and its manipulation. In this work, we theoretically and numerically investigate the tunable spin-wave nonreciprocity in ferrimagnetic domain-wall channels under the influence of an external field. It is revealed that the Dzyaloshinskii-Moriya interaction exerts dual control over both nonreciprocal spin-wave propagation and spin-splitting phenomena. Moreover, SW nonreciprocity is magnetically tunable, with its sign reversibly switched by inverting the applied field direction, while preserving the host spin configuration. The orientation of the magnetic field can selectively stabilize or destabilize the domain wall structure, offering precise control over spin-wave nonreciprocity. Ultimately, we demonstrate a controllable SW transmission scheme via external magnetic field modulation, providing critical insights for the design of future magnonic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2507_17145
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Tunable spin-wave nonreciprocity in ferrimagnetic domain-wall channels
Liu, Tingting
Li, Shuhong
Liu, Yunlong
Qin, Shuchao
Liu, Yang
Wang, Wenjun
Qin, Minghui
Materials Science
Mesoscale and Nanoscale Physics
The nonreciprocal propagation of spin waves (SWs) offers opportunities for developing novel functional magnonic logic devices, where controllability is crucial for magnetic signal processing. Domain walls act as natural waveguides due to their magnetic configuration, offering a platform for the in-depth investigation of nonreciprocal SW propagation and its manipulation. In this work, we theoretically and numerically investigate the tunable spin-wave nonreciprocity in ferrimagnetic domain-wall channels under the influence of an external field. It is revealed that the Dzyaloshinskii-Moriya interaction exerts dual control over both nonreciprocal spin-wave propagation and spin-splitting phenomena. Moreover, SW nonreciprocity is magnetically tunable, with its sign reversibly switched by inverting the applied field direction, while preserving the host spin configuration. The orientation of the magnetic field can selectively stabilize or destabilize the domain wall structure, offering precise control over spin-wave nonreciprocity. Ultimately, we demonstrate a controllable SW transmission scheme via external magnetic field modulation, providing critical insights for the design of future magnonic devices.
title Tunable spin-wave nonreciprocity in ferrimagnetic domain-wall channels
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2507.17145