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High moment bilayer first pole piece layer of a write head with high magnetic stability for promoting read signal symmetry of a read head

机译:具有高磁稳定性的写入头的高力矩双层第一极靴层,用于促进读取头的读取信号对称性

摘要

A high moment bilayer first pole piece layer of a write head has high magnetic stability for promoting read signal symmetry of a read sensor of a read head. The bilayer first pole piece layer has a first layer of nickel iron and a second layer of iron nitride. The iron nitride has a high magnetic moment for conducting more flux per volume than the nickel iron first layer. In a first aspect of the invention, the nickel iron first layer is highly stabilized by providing it with a negative magnetostriction so that a stress induced anisotropy (H.sub.K) supports an intrinsic uniaxial anisotropy (H.sub.K) of the nickel iron first layer. The iron nitride second layer is formed directly on the nickel iron first layer so that by magnetic coupling the iron nitride second layer has significantly improved magnetic stability. In a second aspect of the invention the iron nitride second layer is provided with a positive magnetostriction which still further increases the magnetic stability of the bilayer first pole piece layer. In a preferred embodiment a net magnetostriction is zero or near zero. Each aspect of the invention improves the asymmetry sigma of the read head.
机译:写入头的高力矩双层第一极靴层具有高磁稳定性,以促进读取头的读取传感器的读取信号对称性。双层第一极靴层具有镍铁的第一层和氮化铁的第二层。氮化铁具有较高的磁矩,比第一镍铁层具有更高的单位体积磁通量。在本发明的第一方面中,通过给镍铁第一层提供负磁致伸缩来高度稳定该镍铁第一层,使得应力感应的各向异性(HK)支持合金的固有单轴各向异性(HK)。镍铁第一层。氮化铁第二层直接形成在镍铁第一层上,从而通过磁耦合,氮化铁第二层具有显着改善的磁稳定性。在本发明的第二方面,氮化铁第二层设有正磁致伸缩,其进一步增加了双层第一极靴层的磁稳定性。在一个优选实施例中,净磁致伸缩为零或接近零。本发明的每个方面都改善了读取头的不对称西格玛。

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