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Effects of Magnetic Parameters on Magnonic Bandgaps for Bicomponent Magnonic Crystals

机译:磁性参数对双组分磁性晶体的磁能带隙的影响

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摘要

Magnonic crystals are of large theoretical and technological interest as they provide control over spin waves through magnonic bandgaps similar to what photonic crystals do for electromagnetic waves. In particular, one-dimensional magnonic crystals comprising periodic arrays of submicron stripes of alternating magnetic materials were fabricated and measured to have well-defined bandgaps. Recently, we have developed a theoretical approach which successfully accounted for the measured size-dependences of their bandgap centers and widths. Employing the same theoretical approach in this study, we investigate how these bandgap parameters of such magnonic crystals depend on their magnetic parameters. Results show that magnonic crystals having different magnetic contrasts between their component materials exhibit similar trends in size-dependences of their bandgap parameters. In addition, we also investigate the sensitivity of the bandgap parameters of a magnonic crystal on its magnetic parameters. Calculations reveal that bandgap parameters are more sensitive to changes in the saturation magnetizations of the component materials than changes in their exchange stiffness constants.
机译:磁控晶体具有巨大的理论和技术兴趣,因为它们通过磁控带隙提供对自旋波的控制,类似于光子晶体对电磁波的作用。特别是,制造并测量了包含交替磁性材料的亚微米条纹的周期性阵列的一维大分子晶体,并确定其具有明确的带隙。最近,我们已经开发出一种理论方法,成功地解释了其带隙中心和宽度的尺寸相关性。在本研究中,采用相同的理论方法,我们研究了此类强磁晶体的这些带隙参数如何取决于其磁参数。结果表明,在其组成材料之间具有不同磁对比度的镁磁晶体在其带隙参数的尺寸依赖性方面表现出相似的趋势。此外,我们还研究了镁磁晶体带隙参数对其磁参数的敏感性。计算表明,带隙参数对组成材料饱和磁化强度的变化比其交换刚度常数的变化更敏感。

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