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Variations in Magnetic Properties of SmCo_5/Fe Exchange-Coupled Bilayers with Increasing Fe Thickness

机译:Fe厚度增加时SmCo_5 / Fe交换耦合双层的磁性变化

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Exchange-coupled hard/soft magnetic materials have been widely studied during the last decade because of the prediction that these magnetic materials would have high energy-products. The soft and hard magnetic phases are exchange-coupled at particular grain sizes to give single-phase magnetic behavior. The grain size of the soft phase depends on the nature of the hard phase, and is usually around 10 nm. In this work, we studied soft phase exchange coupling with a hard phase at grain sizes of more than 10nm to investigate the changes in magnetic properties, particularly the energy products, of nanocomposite hard/soft magnets. Bilayers of SmCos/Fe were fabricated using magnetron sputtering on a 70-nm-Cr-buffered Si (100) substrate. The Fe thickness was varied up to 40 nm with 20 nm of SmCo_5. Magnetic measurements were made using an alternating gradient magnetometer. In all the samples, the phases were strongly exchange-coupled with each other. The magnetization was found to increase and the coercivity to decrease with increasing Fe thickness. The energy product first increased and then decreased.
机译:在过去的十年中,交换耦合的硬/软磁性材料已经得到了广泛的研究,因为人们预测这些磁性材料会产生高能量产物。软磁性相和硬磁性相以特定的晶粒尺寸交换耦合,以产生单相磁性。软相的晶粒尺寸取决于硬相的性质,通常约为10 nm。在这项工作中,我们研究了具有大于10nm晶粒尺寸的硬质相的软相交换耦合,以研究纳米复合硬质/软质磁体的磁性能,特别是能量乘积的变化。使用磁控溅射在70 nm Cr缓冲的Si(100)衬底上制造SmCos / Fe双层。在20 nm的SmCo_5下,Fe的厚度变化到40 nm。使用交变梯度磁力计进行磁测量。在所有样品中,各相之间都发生了强交换耦合。发现随着Fe厚度的增加,磁化强度增加而矫顽力降低。能量积先增加然后减少。

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