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    • 7. 发明授权
    • Umbrella shield writer (UmSW) design for perpendicular magnetic recording (PMR)
    • 用于垂直磁记录(PMR)的伞形屏蔽刻录机(UmSW)设计
    • US08879208B1
    • 2014-11-04
    • US14093969
    • 2013-12-02
    • Headway Technologies, Inc.
    • Yue LiuYaguang WeiYuhui TangMoris Dovek
    • G11B5/127
    • G11B5/3146G11B5/11G11B5/1278G11B5/3116
    • An umbrella shield (UmS) is included as the uppermost magnetic layer in a trailing shield design in a read/write head to reduce stray field effects, lower bit error rate, and improve protrusion profile for better touch down detection. The UmS may be exposed or recessed from an air bearing surface (ABS), and has a cross-track width, down-track thickness, and length toward a back side that is greater than the corresponding width, thickness, and length dimensions of an underlying PP3 trailing shield. UmS may substantially conform to an arched PP3 shield shape or may be a flat layer. An insulation layer with a thickness of at least 0.3 microns is formed between the UmS and PP3 trailing shield to prevent undesirable coupling. The UmS preferably has a width greater than any other shield in the read/write head.
    • 伞形屏蔽(UmS)被包括在读/写头中的尾部屏蔽设计中的最上层的磁性层,以减少杂散场效应,降低误码率,并改善突出轮廓,以实现更好的触摸降低检测。 UmS可以从空气轴承表面(ABS)暴露或凹入,并且具有跨越轨道宽度,下轨道厚度和朝向背侧的长度,其大于相应的宽度,厚度和长度尺寸 底层PP3后盾。 UmS可以基本上符合拱形PP3屏蔽形状或者可以是平坦层。 在UmS和PP3后挡板之间形成厚度至少为0.3微米的绝缘层,以防止不期望的耦合。 UmS优选地具有大于读/写头中的任何其它屏蔽的宽度。
    • 9. 发明授权
    • Plasmon resonator with dual waveguide excitation for TAMR
    • 用于TAMR的具有双波导激励的等离子体谐振器
    • US08755256B2
    • 2014-06-17
    • US13676490
    • 2012-11-14
    • Headway Technologies, Inc.
    • Tobias MaletzkyXuhui JinYiming WangDayu ZhouJoe SmythMoris Dovek
    • G11B11/00
    • G11B13/04G02B6/1226G11B5/314G11B5/6088G11B2005/0021
    • A TAMR (Thermal Assisted Magnetic Recording) write head uses the near field energy of optical-laser excited plasmon eigenmodes in a plasmon resonator to locally heat a magnetic recording medium and reduce its coercivity and magnetic anisotropy. The plasmon resonator is formed as a conducting disk-shaped structure with an extending peg that serves to further confine the near fields within a small region of the recording medium. The resonator eigenmodes are excited, through direct or evanescent coupling, by an interference pattern formed by the overlap of optical waves within a dual-channel waveguide, the interference pattern being the result of the waves in one branch being phase-shifted relative to the waves in the other branch.
    • TAMR(热辅助磁记录)写头使用等离子体激元谐振器中的激光激发等离子体激元等离子体本征模态的近场能来局部加热磁记录介质并降低其矫顽力和磁各向异性。 等离子体激元谐振器形成为具有延伸钉的导电盘形结构,其用于进一步将近场限制在记录介质的小区域内。 谐振器本征模通过直接或消逝耦合被由双通道波导内的光波重叠形成的干涉图形激发,干涉图案是一个分支中相对于波相移的结果的结果 在另一个分支。