Magnon-bandgap controllable artificial domain wall waveguide

Author:

Yu Hai1ORCID,Ma Xiao-Ping2ORCID,Zhang Huanhuan1,Zhang Xue-Feng1ORCID,Luo Zhaochu3ORCID,Piao Hong-Guang12ORCID

Affiliation:

1. Hubei Engineering Research Center of Weak Magnetic-field Detection, China Three Gorges University 1 , Yichang 443002, People's Republic of China

2. Department of Physics, Yanbian University 2 , Yanji 133002, People's Republic of China

3. School of Physics, Peiking University 3 , Beijing 100871, People's Republic of China

Abstract

In this paper, a magnon-bandgap controllable artificial domain wall waveguide is proposed by means of micromagnetic simulation. By the investigation of the propagation behavior and dispersion relationship of spin waves in artificial domain wall waveguides, it is found that the nonreciprocal propagation of spin waves in the artificial domain walls is mainly affected by the local effective exchange field, and the magnon bandgap can be controlled by changing the maximum value of the effective exchange field. In addition, it is observed that the artificial domain wall waveguides are structurally more stable than the natural domain wall waveguides under the same spin wave injection conditions, and the magnon bandgap of the artificial domain wall waveguides can be adjusted by its width and magnetic anisotropy parameters. The bandgap controllable artificial domain wall scheme is beneficial to the miniaturization and integration of magnon devices and can be applied to future magnonic technology as a high-pass filter with adjustable cutoff frequency.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Yichang City

Yanbian University

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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