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    • 36. 发明授权
    • Head for thermal assisted magnetic recording device, and thermal assisted magnetic recording device
    • 热辅助磁记录装置头,热辅助磁记录装置
    • US08705327B2
    • 2014-04-22
    • US12984635
    • 2011-01-05
    • Takuya Matsumoto
    • Takuya Matsumoto
    • G11B7/085
    • G11B5/3116G11B5/1278G11B5/314G11B5/6088G11B2005/0005G11B2005/0021
    • An optical near-field generating efficiency of an optical near-field generating element is improved and a temperature rise of the element is suppressed. An optical near-field is generated using a conductive structure having a cross-sectional shape whose width in a direction perpendicular to a polarization direction of incident light transmitted through a waveguide gradually becomes shorter toward a vertex where an optical near-field is generated and having a shape whose width gradually, or in stages, becomes smaller in a traveling direction of the incident light toward the vertex where an optical near-field is generated. The waveguide is arranged beside the conductive structure and an optical near-field is generated via a surface plasmon generated on a lateral face of the conductive structure.
    • 提高光学近场产生元件的光学近场产生效率,并且抑制元件的温度升高。 使用具有横截面形状的导电结构产生光学近场,该导电结构的横截面形状的宽度在垂直于通过波导透射的入射光的偏振方向的宽度朝向产生光学近场的顶点逐渐变短,并且具有 在入射光朝向产生光学近场的顶点的行进方向上逐渐或逐渐变宽的形状。 波导布置在导电结构旁边,并且通过在导电结构的侧面上产生的表面等离子体激元产生光学近场。