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The creation of nanometer magnetic domain structure in artificially pinning hole of magneto-optical recording material

机译:人工磁光记录材料钉孔中纳米磁畴结构的产生

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摘要

A novel method for pinning the magnetic domain in artificially pinning hole has been developed for magneto-optical (MO) thin film material Dy/sub x/(FeCo)/sub 1-x/. The artificially pinning holes were fabricated using electron-beam lithography. Hole arrays with square, star, and circle shapes had been made in this study. However, the nanometer scale magnetic domains could be formed inside the hole arrays if the pinning hole geometry was not well defined, and the pinning domain may induce media noise.
机译:针对磁光(MO)薄膜材料Dy / sub x /(FeCo)/ sub 1-x /,开发了一种在人工钉孔中钉住磁畴的新方法。使用电子束光刻制造人工钉扎孔。在这项研究中,制作了具有正方形,星形和圆形形状的孔阵列。但是,如果钉扎孔的几何形状没有很好地定义,则可以在孔阵列内部形成纳米级磁畴,并且钉扎磁畴可能会引起介质噪声。

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