Magnetic force microscopy measurements of skew angle dependencies in perpendicular media

E. Svedberg, D. Litvinov, R. Gustafson, C. Chang, S. Khizroev
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Abstract

Today, one of the most critical issues in implementing perpendicular recording is believed to be the excessive sensitivity of a typical perpendicular recording system to the skew angle. In perpendicular data storage, the recording is expected to be produced in the effective gap near the trailing edge of the main pole of a single pole head (SPH). In this paper, magnetic force microscopy (MFM) is utilized to study the skew angle effects in perpendicular media with a CoCr-based hard layer and a Permalloy soft underlayer.
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垂直介质中斜角依赖性的磁力显微镜测量
目前,实现垂直记录的最关键问题之一被认为是典型的垂直记录系统对倾斜角度的过度敏感性。在垂直数据存储中,记录预计将在单极头(SPH)主极后缘附近的有效间隙中产生。本文利用磁力显微镜(MFM)研究了cocr基硬层和Permalloy软层垂直介质中的偏斜角效应。
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Monolayer of closely packed FePt islands with a tetragonal L1/sub 0/ structure produced by thermally created mass transport High frequency inductance measurements and performance projections made for cusp-field single pole heads Resonant soft x-ray scattering from magnetic thin films CoCrPt-alloy perpendicular media for high-density magnetic recording Magnetic force microscopy measurements of skew angle dependencies in perpendicular media
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