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Effect of Coil Position on Magnetization Dynamics of Multilayered Hard Disk Writer Yokes

机译:线圈位置对多层硬盘写入磁轭磁化动力学的影响

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摘要

Three partially built hard disk writer structures with active coil windings located at different positions relative to the yoke were studied by time resolved scanning Kerr microscopy. All three Cartesian components of the magnetization were recorded simultaneously. Time resolved signals recorded near the pole tip showed that the component of magnetization parallel to the driving field had the same rise time irrespective of the location of the coil winding, but largest amplitude when the active coil was located near the middle of the yoke. Dynamic images obtained from three devices showed “flux beaming” in a channel parallel to the driving field. The magnetic contrast was strongest when the active coil was located near the centre of the yoke, while relaxation after removal of the excitation was most complete when the active coil was located near the confluence region. These results confirm the need for a multiturn coil to ensure effective flux propagation along the entire length of the yoke.
机译:通过时间分辨扫描Kerr显微镜研究了三个部分构建的硬盘写入器结构,它们的有源线圈绕组位于相对于轭的不同位置。同时记录了磁化的所有三个笛卡尔分量。记录在磁极尖端附近的时间分辨信号表明,与驱动场平行的磁化分量具有相同的上升时间,而与线圈绕组的位置无关,但是当有源线圈位于磁轭中间时,振幅最大。从三个设备获得的动态图像在与驱动场平行的通道中显示“通量光束”。当有源线圈位于磁轭的中心附近时,磁对比度最强,而当有源线圈位于汇合区域附近时,去除激励后的弛豫最完全。这些结果证实了需要多匝线圈来确保沿磁轭整个长度的有效磁通传播。

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