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Micromagnetic Study of Reducing Forbidden Bandgaps and its Width in a Triangular Antidot Array Waveguide With Different Orientations

机译:减小方位的三角点阵阵列波导中禁带宽度及其宽度的微磁学研究

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摘要

Dipole-exchange spin waves (SWs) propagating in a 1-D magnonic waveguide embedded with different orientations of triangular antidots are investigated through the micromagnetic simulation. The dipole-exchange SW propagation is affected due to the effect of changing the triangular antidots orientation. This leads to reduction in the number of forbidden bands and their gap width in the magnonic waveguide. The SW characteristics are interpreted by plotting frequency dispersion curves and analyzing the power and phase distribution profile (PPDP) and static demagnetization field profile to substantiate the occurrence of bandgaps. The number of forbidden bands and their gap width get reduced due to the formation of symmetric and antisymmetric modes, and it will be further clarified by the PPDPs. For theta = 0 degrees, four wide bandgaps are recorded; I and II bandgaps are due to symmetric modes, whereas the remaining gaps are due to antisymmetric modes. From theta = 0 degrees to 90 degrees, the number of forbidden bands is reduced from 4 to 2 because of the inhomogeneous distribution of the internal field introduced by the presence of triangular array antidots in the transverse direction, and it is confined via the static demagnetization field. The way to develop magnonic antidot-based waveguide for SW filter applications is paved by opening, closing, and tuning of the gap width. This can be effectively brought about by changing the orientation of triangular antidots.
机译:通过微磁模拟研究了在嵌入了不同方向的三角形解毒剂的一维磁悬浮波导中传播的偶极子交换自旋波(SWs)。偶极交换SW的传播受到改变三角形解毒剂方向的影响。这导致了在强磁波导中禁带的数量及其间隙宽度的减小。通过绘制频率色散曲线并分析功率和相位分布曲线(PPDP)和静态退磁磁场曲线来证实带隙的发生,从而解释SW特性。由于形成了对称和反对称模式,禁带的数量及其间隙宽度减小了,PPDP将进一步阐明。对于θ= 0度,记录了四个宽带隙。 I和II带隙归因于对称模式,而其余的间隙归因于反对称模式。从theta = 0度到90度,禁带的数量从4个减少到2个,这是由于在横向方向上存在三角形阵列反点而引入的内部场的不均匀分布,并且通过静态消磁将其限制领域。通过打开,关闭和调整间隙宽度,为开发用于SW滤波器应用的基于强力解毒剂的波导铺平了道路。这可以通过改变三角形解毒剂的方向有效地实现。

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