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首页> 外文期刊>Journal of Physics. Condensed Matter >Magneto-optical study of the magnetization reversal process of Fe nanowires
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Magneto-optical study of the magnetization reversal process of Fe nanowires

机译:铁纳米线磁化反转过程的磁光研究

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We discuss results of magneto-optical Kerr effect (MOKE) measurements performed on a thin Fe film of 13 nm thickness, which has been patterned into a periodic arrangement of nanowires by means of optical interference lithography. The resulting array of nanowires consist of stripes having a width of 150 nm and a periodicity of 300 nm. MOKE hysteresis loops are measured within magnetic fields which are aligned in different directions, both parallel and perpendicular with respect to the direction of the nanowires as well as for various angles in between. A particular arrangement of the longitudinal Kerr effect measurement allows us to identify both the longitudinal and the transverse component of the magnetization of Fe nanowires. From this both the angle and the magnitude of the magnetization vector M are derived. For a non-parallel alignment of the nanowires with respect to the direction of-the external magnetic field, the hysteresis loops consist of a plateau region with two coercive fields H-c1 and H-c2, which is discussed as resulting from an anisotropic pinning behaviour of magnetic domains in directions along and perpendicular to the nanowires. [References: 20]
机译:我们讨论了在13 nm厚的Fe薄膜上执行的磁光Kerr效应(MOKE)测量的结果,该薄膜已通过光学干涉光刻技术被图案化为纳米线的周期性排列。所得的纳米线阵列由具有150nm的宽度和300nm的周期性的条带组成。 MOKE磁滞回线是在磁场中测量的,磁场在不同的方向上排列,相对于纳米线的方向平行和垂直,以及之间的各种角度也是如此。纵向克尔效应测量的一种特殊安排使我们能够识别出Fe纳米线磁化的纵向和横向分量。由此得出磁化矢量M的角度和大小。对于纳米线相对于外部磁场方向的非平行排列,磁滞回线由一个具有两个矫顽场H-c1和H-c2的平稳区域组成,这是由于各向异性钉扎而引起的在沿着和垂直于纳米线的方向上磁畴的行为。 [参考:20]

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