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Magnetically tunable Airy-like beam of magnetostatic surface spin waves
作者姓名:戴海涛  司马泰  肖爱香  薛永祥  郭子扬  张钰  张晓东  刘昌龙
作者单位:Tianjin Key Laboratory of Low Dimensional Materials Physics and Preparing Technology
基金项目:supported in part by the National Natural Science Foundation of China(Nos.61975148 and 11535008)。
摘    要:In this Letter,we report an Airy-like beam of magnetostatic surface spin wave(Ai BMSSW)supported on the ferromagnetic film,which is transferred from the optical field.The propagation properties of Ai BMSSW were verified with micromagnetic simulation.From simulation results,the typical parabolic trajectory of the Airy-type beam was observed with an exciting source encoding 3/2 phase pattern.The simulation results coincide well with design parameters.Furthermore,simulated results showed that the trajectories of the Ai BMSSW could be tuned readily with varied external magnetic fields.This work can extend the application scenario of spin waves.

关 键 词:Airy-like  beam  spin  wave  magnetostatic  surface  spin  wave  3/2  phase  pattern

Magnetically tunable Airy-like beam of magnetostatic surface spin waves
Haitao Dai,Zolkefl AYMohamed,Aixiang Xiao,Yongxiang Xue,Ziyang Guo,Yu Zhang,Xiaodong Zhang,Changlong Liu.Magnetically tunable Airy-like beam of magnetostatic surface spin waves[J].中国光学快报(英文版),2021(1):90-94.
Authors:Haitao Dai  Zolkefl AYMohamed  Aixiang Xiao  Yongxiang Xue  Ziyang Guo  Yu Zhang  Xiaodong Zhang  Changlong Liu
Institution:(Tianjin Key Laboratory of Low Dimensional Materials Physics and Preparing Technology,School of Science,Tianjin University,Tianjin 300072,China)
Abstract:In this Letter, we report an Airy-like beam of magnetostatic surface spin wave(Ai BMSSW) supported on the ferromagnetic film, which is transferred from the optical field. The propagation properties of Ai BMSSW were verified with micromagnetic simulation. From simulation results, the typical parabolic trajectory of the Airy-type beam was observed with an exciting source encoding 3/2 phase pattern. The simulation results coincide well with design parameters. Furthermore, simulated results showed that the trajectories of the Ai BMSSW could be tuned readily with varied external magnetic fields. This work can extend the application scenario of spin waves.
Keywords:
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