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Effects of array arrangements in nano-patterned thin film media

机译:纳米图案薄膜介质中阵列布置的影响

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In this work, the effect of different arrays arrangements on the magnetic behaviour of patterned thin film media is simulated. The modeled films consist of 80 x 80 cobalt grains of uniform diameter (20 nm) distributed into two different array arrangement: hexagonal (triangular) or square arrays. In addition to that, for each array arrangement, two cases of anisotropy orientations, random and textured films are considered. For both array arrangements and media orientations, hysteresis loops at different array separation (d) were simulated. Predictions show that for closely packed films, the shearing effects on the magnetization loop are much larger for the square array arrangement than the hexagonal one. According to these predictions, the bit switching field distribution in interacting 2D systems is much narrower for the hexagonal array arrangement. This result could be very important for high-density magnetic recording where a narrow bit switching field distribution is required.
机译:在这项工作中,模拟了不同阵列布置对图案化薄膜介质的磁性的影响。模型薄膜由80 x 80钴颗粒组成,均匀直径(20nm)分布成两种不同的阵列排列:六边形(三角形)或方形阵列。除此之外,对于每个阵列布置,考虑两个各向异性取向,随机和纹理膜的两个情况。对于阵列布置和媒体方向,模拟不同阵列分离(D)的滞后环。预测表明,对于紧密堆叠的薄膜,对于磁化回路对方形阵列布置的剪切效果比六边形阵列布置大得多。根据这些预测,交互2D系统中的位切换场分布对于六边形阵列布置是要较窄的。该结果对于高密度磁记录可能非常重要,其中需要窄位开关场分布。

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