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MFM Observation of High Coercivity in Nanostructured Tetragonally Distorted FeCo Films

机译:MFM观察纳米结构四角扭曲的FECO薄膜高矫顽力

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The hard magnetic properties of nanostructured tetragonally distorted FeCo films, which have a relatively high magnetic anisotropy of $sim 10^{6},,ext{J}cdot ext{m}^{-3}$ , were investigated to reveal the mechanism of coercivity. FeCo nanodots with a diameter of 50 nm and thickness of 20 nm were fabricated using electron beam lithography. Magnetic force microscopy (MFM) revealed that the FeCo nanodots were magnetized perpendicularly, and that magnetization reversal occurred individually. The magnetization curve of the nanodots was obtained from the MFM results, and the coercivity was found to be 0.60 T, which was lower than the theoretically obtained value. The mechanism of the coercivity reduction is discussed.
机译:纳米结构四边形失真的FECO膜的硬磁性,具有相对高的磁各向异性<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http ://www.w3.org/1999/xlink“> $ sim 10 ^ {6} ,, text {j} cdot text {m} ^ { RS 进行了调查,揭示了矫顽力的机制。使用电子束光刻制造直径为50nm和厚度为20nm的Feco纳米蛋白。磁力显微镜(MFM)显示,FECO纳米蛋白垂直磁化,并且磁化反转单独发生。从MFM结果获得纳米蛋白的磁化曲线,发现矫顽力为0.60t,其低于理论上所获得的值。讨论了矫顽力的机制。

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