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首页> 外文期刊>Journal of Applied Physics >A soft magnetic underlayer with negative uniaxial magnetocrystalline anisotropy for suppression of spike noise and wide adjacent track erasure in perpendicular recording media
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A soft magnetic underlayer with negative uniaxial magnetocrystalline anisotropy for suppression of spike noise and wide adjacent track erasure in perpendicular recording media

机译:具有负单轴磁晶各向异性的软磁衬层,用于抑制尖峰噪声和垂直记录介质中较宽的相邻磁道擦除

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摘要

The suppression of spike noise and wide adjacent track erasure (WATE) are important technical issues in the development of a perpendicular recording medium (PRM). As a solution to both of these problems, this paper presents a type of soft magnetic underlayer (SUL) with negative uniaxial perpendicular magnetic anisotropy. The magnetic anisotropy is achieved by employing a material with negative uniaxial magnetocrystalline anisotropy (K_u~(grain)). WATE is suppressed in the SUL by realizing wide distribution of magnetic flux below the edge of the return yoke, while spike noise is eliminated by ensuring the formation of a Neel wall instead of a Bloch wall in SUL domains. CoIr with the disordered hcp structure is selected as a negative K_u~(grain) material, and c-plane-orinted CoIr films with various Ir contents are prepared for experimental evaluation. Among the films tested, the CoIr film with 22 at. % Ir is found to provide the minimum K_u~(grain) value of -6 x 10~6 ergs/cm~3. Under a field applied parallel to the film plane, this film exhibits soft magnetic properties, attributable to the high crystallographic symmetry of the c-plane sheet texture. A PRM fabricated using the CoIr SUL is confirmed to display substantially lower spike noise and WATE compared to conventional structures.
机译:在垂直记录介质(PRM)的开发中,抑制尖峰噪声和宽的相邻磁道擦除(WATE)是重要的技术问题。为了解决这两个问题,本文提出了一种具有负单轴垂直磁各向异性的软磁衬层(SUL)。通过采用具有负单轴磁晶各向异性(K_u〜(晶粒))的材料来实现磁各向异性。通过在返回轭边缘以下实现磁通量的广泛分布,可以抑制SUL中的WATE,同时通过确保在SUL域中形成Neel壁而不是Bloch壁来消除尖峰噪声。选择具有无序hcp结构的CoIr作为负K_u〜(晶粒)材料,并制备具有各种Ir含量的c平面取向CoIr膜用于实验评估。在所测试的薄膜中,CoIr薄膜的厚度为22 at。发现%Ir提供的最小K_u〜(颗粒)值为-6×10〜6 ergs / cm〜3。在平行于膜平面施加的电场下,该膜表现出软磁性,这归因于c平面片结构的高结晶对称性。与传统结构相比,已确认使用CoIr SUL制造的PRM显示出明显更低的尖峰噪声和WATE。

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