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Areal density capability improvement with spin-orbit torque based structures surrounding main pole tip

机译:通过围绕主极尖的自旋轨道扭矩结构提高地域密度能力

摘要

The present disclosure generally relates to data storage devices, and more specifically, to a magnetic media drive employing a magnetic recording head. The head includes a main pole, a heavy metal structure surrounding at least a portion of the main pole at a media facing surface (MFS), and two magnetic structures sandwiching the heavy metal structure. Spin-orbit torque (SOT) is generated from the heavy metal structure, inducing magnetization switching (or precession) in the magnetic structures. The SOT reduces the magnetic flux shunting from the main pole to the trailing shield, and the magnetization switching sharpens the write field profile in the cross-track direction. The SOT based head with the magnetic structures sandwiching the heavy metal structure increases both track density (tracks per inch) and linear density (bit per inch), which in turn increases the areal density capability (ADC), which is the product of tracks per inch and bit per inch.
机译:[0001]本公开总体上涉及数据存储设备,并且更具体地,涉及采用磁记录头的磁介质驱动器。磁头包括主磁极,在面向介质的表面(MFS)周围围绕主磁极的至少一部分的重金属结构,以及将重金属结构夹在中间的两个磁性结构。自重金属结构产生自旋轨道转矩(SOT),从而在磁性结构中引起磁化切换(或进动)。 SOT减少了从主极到尾随屏蔽的磁通量分流,并且磁化切换使跨磁道方向上的写入场轮廓变得清晰。基于SOT的磁头将磁性结构夹在重金属结构中,同时提高了磁道密度(每英寸磁道数)和线密度(每英寸比特数),从而提高了面密度(ADC),这是磁道密度的乘积英寸和每英寸位。

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