Thermally-assisted magnetic recording head having temperature sensor embedded on dielectric waveguide
    3.
    发明授权
    Thermally-assisted magnetic recording head having temperature sensor embedded on dielectric waveguide 有权
    具有嵌入在介质波导上的温度传感器的热辅助磁记录头

    公开(公告)号:US08547805B1

    公开(公告)日:2013-10-01

    申请号:US13432245

    申请日:2012-03-28

    IPC分类号: G11B11/00

    摘要: A thermal assisted magnetic recording head includes a dielectric waveguide that is configured to propagate propagation light a metal waveguide that is provided facing the dielectric waveguide and that couples to the propagation light propagating through the dielectric waveguide in a surface plasmon mode, thereby generating and propagating surface plasmon, a near-field light generator that is exposed on an air bearing surface facing a magnetic recording medium either at an end part of the metal waveguide or at a position facing the end part of the metal waveguide, and that generates near-field light from the surface plasmon, a magnetic pole for magnetic recording that is exposed on the air bearing surface, and a temperature sensor that is arranged inside the dielectric waveguide.

    摘要翻译: 热辅助磁记录头包括电介质波导,其被配置为传播传播光,所述介质波导设置成面对介质波导并且以表面等离子体模式耦合到传播通过介质波导的传播光,从而产生和传播表面 等离子体激元,近场光发生器,其在面向金属波导的端部的面向磁记录介质的空气轴承表面上或面对金属波导的端部的位置处暴露,并且产生近场光 从表面等离子体激元,暴露在空气轴承表面上的用于磁记录的磁极,以及布置在电介质波导内部的温度传感器。

    Thermally-assisted magnetic recording head, head gimbals assembly, head arm assembly, and magnetic disk unit
    5.
    发明授权
    Thermally-assisted magnetic recording head, head gimbals assembly, head arm assembly, and magnetic disk unit 有权
    热辅助磁记录头,头架万向节组件,头臂组件和磁盘单元

    公开(公告)号:US08363515B1

    公开(公告)日:2013-01-29

    申请号:US13397041

    申请日:2012-02-15

    IPC分类号: G11B11/00

    摘要: The thermally-assisted magnetic recording head includes: a magnetic pole; a waveguide propagating light in a first direction, the first direction intersecting with an air bearing surface; a plasmon generator having a base and a projection, the base having a surface, and the projection having a top, standing partially on the surface of the base and extending in the first direction. The plasmon generator has a first portion and a second portion, and the first portion and the second portion are provided in this order from the air bearing surface in a direction away from the air bearing surface. Herein, the top of the projection and the surface of the base in the first portion define a first step, and the top of the projection and the surface of the base in the second portion define a second step. The first step is larger than the second step.

    摘要翻译: 热辅助磁记录头包括:磁极; 波导在第一方向传播光,所述第一方向与空气轴承表面相交; 具有基部和突起的等离子体发生器,所述基部具有表面,并且所述突起具有顶部,部分地位于所述基部的所述表面上并沿所述第一方向延伸。 等离子体发生器具有第一部分和第二部分,并且第一部分和第二部分沿着远离空气支承表面的方向从空气轴承表面依次设置。 这里,突起的顶部和第一部分中的基部的表面限定第一步骤,并且突起的顶部和第二部分中的基部的表面限定第二步骤。 第一步大于第二步。

    Thermally-assisted magnetic recording head, head gimbal assembly and magnetic recording device
    6.
    发明授权
    Thermally-assisted magnetic recording head, head gimbal assembly and magnetic recording device 有权
    热辅助磁记录头,磁头万向架组件和磁记录装置

    公开(公告)号:US08369192B1

    公开(公告)日:2013-02-05

    申请号:US13298360

    申请日:2011-11-17

    IPC分类号: G11B11/00

    摘要: A thermally-assisted magnetic recording head enables even steeper magnetization reversal between adjacent magnetic domains of a magnetic recording medium and satisfies the demand for high SN ratio and high recording density. The thermally-assisted magnetic recording head includes a pole that generates a writing magnetic field from an end surface that forms a part of an air bearing surface that opposes a magnetic recording medium, a waveguide through which light for exciting surface plasmon propagates, and a plasmon generator that couples to the light in a surface plasmon mode. The plasmon generator has a plane part and a projection part, the pole has a projection part opposing surface that opposes the projection part, and the distance between the projection part opposing surface and the projection part is 10-40 nm.

    摘要翻译: 热辅助磁记录头使磁记录介质的相邻磁畴之间的磁化反转能够更高,并满足高SN比和高记录密度的要求。 热辅助磁记录头包括从形成与磁记录介质相对的空气轴承表面的一部分的端面产生书写磁场的磁极,用于激发表面等离子体激元的光传播的波导和等离子体激元 发生器以表面等离子体模式耦合到光。 等离子体发生器具有平面部分和突出部分,所述极具有与突出部分相对的突出部分相对表面,并且突出部分相对表面和突出部分之间的距离为10-40nm。

    Method for manufacturing a thermally-assisted magnetic head
    7.
    发明授权
    Method for manufacturing a thermally-assisted magnetic head 有权
    热辅助磁头制造方法

    公开(公告)号:US08341825B2

    公开(公告)日:2013-01-01

    申请号:US12947091

    申请日:2010-11-16

    IPC分类号: G11B5/127 H04R31/00

    摘要: A thermally-assisted magnetic head includes a slider including an air bearing surface (ABS) and a waveguide with a core that extends from a light entering surface to the ABS, and a laser diode (LD) unit attached to the light entering surface. The LD unit faces the light entering surface, and a photo detector faces the ABS. A polarizer that only transmits light having a polarization component orthogonal to a polarization direction of linearly polarized laser light is disposed between the ABS and the photo detector. An LD of the LD unit is activated, and the linearly polarized laser light enters the core from the light entering surface. Light radiated from the ABS enters the polarizer, and an alignment of the slider and the LD unit is performed while the photo detector detects the light transmitted through the polarizer.

    摘要翻译: 热辅助磁头包括滑动件,其包括空气轴承表面(ABS)和具有从光进入表面延伸到ABS的芯的波导和附接到光进入表面的激光二极管(LD)单元。 LD单元面向光入射表面,光检测器面向ABS。 只有透射具有与线偏振激光的偏振方向正交的偏振分量的光的偏振器设置在ABS和光电检测器之间。 LD单元的LD被激活,并且线偏振激光从光入射表面进入芯。 从ABS辐射的光进入偏振器,并且在光电检测器检测透过偏振器的光时,执行滑块和LD单元的对准。

    HEAT-ASSISTED MAGNETIC RECORDING HEAD INCLUDING PLASMON GENERATOR
    8.
    发明申请
    HEAT-ASSISTED MAGNETIC RECORDING HEAD INCLUDING PLASMON GENERATOR 有权
    热辅助磁记录头,包括等离子发生器

    公开(公告)号:US20110228420A1

    公开(公告)日:2011-09-22

    申请号:US12728890

    申请日:2010-03-22

    IPC分类号: G11B5/02

    摘要: A plasmon generator has an outer surface including a plasmon exciting part, and has a near-field light generating part located in a medium facing surface. The plasmon exciting part faces an evanescent light generating surface of a waveguide's core with a predetermined distance therebetween. The outer surface of the plasmon generator further includes first and second inclined surfaces that are each connected to the plasmon exciting part. The first and second inclined surfaces increase in distance from each other with increasing distance from the plasmon exciting part. The plasmon generator includes a shape changing portion where the angle of inclination of each of the first and second inclined surfaces with respect to the evanescent light generating surface increases continuously with decreasing distance to the medium facing surface.

    摘要翻译: 等离子体发生器具有包括等离子体激元部分的外表面,并且具有位于介质面对表面中的近场光产生部分。 等离子激元激发部分面对波导芯的渐逝光产生表面,其间具有预定的距离。 等离子体发生器的外表面还包括各自连接到等离子体激元部分的第一和第二倾斜表面。 第一和第二倾斜表面随距离等离激子激发部分的距离增加而彼此间距离增加。 等离子体发生器包括形状改变部分,其中第一和第二倾斜表面中的每一个相对于ev逝光产生表面的倾斜角度随着到介质面向表面的距离的减小而连续增加。

    METHOD FOR MANUFACTURING A THERMALLY-ASSISTED MAGNETIC HEAD
    9.
    发明申请
    METHOD FOR MANUFACTURING A THERMALLY-ASSISTED MAGNETIC HEAD 有权
    制造热辅助磁头的方法

    公开(公告)号:US20120117791A1

    公开(公告)日:2012-05-17

    申请号:US12947091

    申请日:2010-11-16

    IPC分类号: G11B5/127

    摘要: In a method for manufacturing a thermally-assisted magnetic head that includes a slider and an LD unit, the slider including an air bearing surface (ABS) that faces a recording medium and including a waveguide with a core for light propagation that extends from a light entering surface, which is different from the ABS, to the ABS, the LD unit being attached to the light entering surface of the slider, and the thermally-assisted magnetic head performing magnetic recording while heating the recording medium with near-field light that is excited from linearly polarized laser light, the LD unit is disposed in a position facing the light entering surface of the slider, a photo detector is disposed in a position facing the ABS of the slider, and a polarizer transmitting only light having a polarization component that is orthogonal to a polarization direction of the linearly polarized laser light is disposed between the ABS and the photo detector. An LD of the LD unit is activated, and the linearly polarized laser light is enabled to enter into the core from the light entering surface of the slider. Light radiated from the ABS is enabled to enter into the polarizer, and an alignment of the slider and the LD unit is performed while the photo detector detects light that is transmitted through the polarizer.

    摘要翻译: 在制造包括滑块和LD单元的热辅助磁头的方法中,滑块包括面向记录介质的空气轴承表面(ABS),该空气轴承表面包括具有从光线延伸的光传播用核心的波导 进入与ABS不同的表面,将LD单元附着到滑块的光进入表面,并且热辅助磁头在用近场光加热记录介质的同时进行磁记录 从线偏振激光激发,LD单元被设置在面向滑块的光进入表面的位置,光电检测器设置在面向滑块的ABS的位置,偏振器仅透射具有偏振分量的光, 与线偏振激光的偏振方向垂直的方式设置在ABS和光电检测器之间。 LD单元的LD被激活,并且线偏振激光能够从滑块的光进入表面进入芯中。 从ABS辐射的光能够进入偏振器,并且当光电检测器检测到透射通过偏振器的光时,执行滑块和LD单元的对准。

    Heat-assisted magnetic recording head including plasmon generator
    10.
    发明授权
    Heat-assisted magnetic recording head including plasmon generator 有权
    热辅助磁记录头包括等离子体发生器

    公开(公告)号:US08125858B2

    公开(公告)日:2012-02-28

    申请号:US12728890

    申请日:2010-03-22

    IPC分类号: G11B11/00

    摘要: A plasmon generator has an outer surface including a plasmon exciting part, and has a near-field light generating part located in a medium facing surface. The plasmon exciting part faces an evanescent light generating surface of a waveguide's core with a predetermined distance therebetween. The outer surface of the plasmon generator further includes first and second inclined surfaces that are each connected to the plasmon exciting part. The first and second inclined surfaces increase in distance from each other with increasing distance from the plasmon exciting part. The plasmon generator includes a shape changing portion where the angle of inclination of each of the first and second inclined surfaces with respect to the evanescent light generating surface increases continuously with decreasing distance to the medium facing surface.

    摘要翻译: 等离子体发生器具有包括等离子体激元部分的外表面,并且具有位于介质面对表面中的近场光产生部分。 等离子激元激发部分面对波导芯的渐逝光产生表面,其间具有预定的距离。 等离子体发生器的外表面还包括各自连接到等离子体激元部分的第一和第二倾斜表面。 第一和第二倾斜表面随距离等离激子激发部分的距离增加而彼此间距离增加。 等离子体发生器包括形状改变部分,其中第一和第二倾斜表面中的每一个相对于ev逝光产生表面的倾斜角度随着到介质面向表面的距离的减小而连续增加。