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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Domain wall energy landscapes in amorphous magnetic films with asymmetric arrays of holes
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Domain wall energy landscapes in amorphous magnetic films with asymmetric arrays of holes

机译:具有不对称孔阵列的非晶磁性膜中的畴壁能量景观

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摘要

Arrays of asymmetric holes have been defined in amorphous Co-Si films by e-beam lithography in order to study domain wall motion across the array subject to the asymmetric pinning potential created by the holes. Experimental results on Kerr effect magnetooptical measurements and hysteresis loops are compared with micromagnetic simulations in films with arrays of triangular holes. These show that the potential asymmetry favours forward wall propagation for flat walls but, if the wall contains a kink, net backward wall propagation is preferred at low fields, in agreement with minor loop experiments. The difference between the fields needed for forward and backward flat wall propagation increases as the size of the triangular holes is reduced, becoming maximum for 1 mu m triangles, which is the characteristic length scale set by domain wall width.
机译:为了通过电子束光刻法在非晶态Co-Si薄膜中定义不对称孔阵列,以研究在整个阵列上的畴壁运动受到孔所产生的不对称钉扎电位的影响。将Kerr效应磁光测量和磁滞回线的实验结果与带有三角形孔阵列的薄膜中的微磁模拟进行了比较。这些表明潜在的不对称性有利于平坦壁的正向壁传播,但是,如果壁包含一个纽结,则在较小的磁场下,净向后壁的传播更可取,这与较小的环路实验一致。随着三角形孔尺寸的减小,向前和向后平坦壁传播所需的场之间的差异会增加,对于1μm的三角形而言最大,这是由畴壁宽度设置的特征长度尺度。

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