Static and dynamic behaviors of 1-D and 2-D magnonic crystals

X. M. Liu, J. Ding, G. Kakazei, A. Adeyeye
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Abstract

Magnonic crystals (MCs), conceived as the magnetic microwave analog of photonic crystals, have received considerable attention recently due to their potential in a wide range of applications such as microwave resonators, filters and spin logic devices. Compared with conventional single component MCs, bi-component MCs consisting of arrays of one FM material in the matrix of another FM material shows advantageous due to an additional degree of freedom in tailoring spin wave properties. In this work, we present a systematic investigation of the static and dynamic behaviors of various types of 1-D and 2-D bi-component MCs.
一维和二维磁振子晶体的静态和动态行为
磁振子晶体(MCs)被认为是光子晶体的磁性微波模拟物,近年来由于其在微波谐振器、滤波器和自旋逻辑器件等方面的广泛应用而受到广泛关注。与传统的单组分mc相比,由一种调频材料在另一种调频材料的矩阵中阵列组成的双组分mc由于在定制自旋波特性方面具有额外的自由度而具有优势。在这项工作中,我们提出了各种类型的1-D和2-D双组分mc的静态和动态行为的系统研究。
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