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    • 6. 发明申请
    • METHOD OF MANUFACTURING THERMALLY-ASSISTED MAGNETIC RECORDING HEAD
    • 制造热辅助磁记录头的方法
    • US20130219698A1
    • 2013-08-29
    • US13404704
    • 2012-02-24
    • Shinji HARAKoji SHIMAZAWARyo HOSOI
    • Shinji HARAKoji SHIMAZAWARyo HOSOI
    • G11B5/127
    • G11B5/314G11B5/6088G11B2005/0021
    • A method of manufacturing a thermally-assisted magnetic recording head includes: providing a bar and a plurality of light source units, the bar including a plurality of thermally-assisted magnetic recording head sections arranged in a first direction, and each of the light source units including a substrate and a light source; and bonding a second surface of the substrate to the bar with an adhesive layer in between, where the plurality of light source units are so aligned to the respective thermally-assisted magnetic recording head sections on the bar, as to allow a first surface of the substrate, which supports the light source, to be parallel to the first direction, the bonding allowing the substrates of the light source units to be irradiated with a first laser beam and allowing the bar to be irradiated with a second laser beam, to thereby allow the adhesive layer to be melted.
    • 一种制造热辅助磁记录头的方法包括:提供条和多个光源单元,所述条包括沿第一方向布置的多个热辅助磁记录头部分,并且每个光源单元 包括基底和光源; 以及将所述基板的第二表面与所述条之间的粘合剂层粘合到所述条上,其中所述多个光源单元与所述条上的相应的热辅助磁记录头部分对齐,以允许所述第一表面 支撑光源的基板平行于第一方向,使得能够用第一激光束照射光源单元的基板并且允许用第二激光束照射条的接合,从而允许 要熔化的粘合剂层。
    • 7. 发明申请
    • METHOD FOR MANUFACTURING A THERMALLY-ASSISTED MAGNETIC HEAD
    • 制造热辅助磁头的方法
    • US20120117791A1
    • 2012-05-17
    • US12947091
    • 2010-11-16
    • Shinji HARAKoji ShimazawaEiji KomuraTsutomu ChouSeiichi Takayama
    • Shinji HARAKoji ShimazawaEiji KomuraTsutomu ChouSeiichi Takayama
    • G11B5/127
    • G11B5/314G02B6/4202G11B5/105G11B5/3116G11B5/6088G11B2005/0021Y10T29/49032Y10T29/49041Y10T29/49043Y10T29/49044Y10T29/49046Y10T29/49048Y10T29/49052
    • 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.
    • 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。
    • 8. 发明申请
    • CPP-TYPE MAGNETORESISTANCE EFFECT ELEMENT HAVING CHARACTERISTIC FREE LAYERS
    • 具有特征自由层的CPP型磁阻效应元件
    • US20090061258A1
    • 2009-03-05
    • US11847521
    • 2007-08-30
    • Tomohito MIZUNOYoshihiro TSUCHIYAShinji HARAKoji SHIMAZAWATsutomu CHOU
    • Tomohito MIZUNOYoshihiro TSUCHIYAShinji HARAKoji SHIMAZAWATsutomu CHOU
    • G11B5/39
    • B82Y25/00G01R33/093G11B5/3932Y10T428/1129
    • A magnetic field detecting element comprises: a stack which includes first, second and third magnetic layers whose magnetization directions change in accordance with an external magnetic field, a first non-magnetic intermediate layer which is sandwiched between the first magnetic layer and the second magnetic layer, the first non-magnetic intermediate layer producing a magnetoresistance effect between the first magnetic layer and the second magnetic layer, and a second non-magnetic intermediate layer which is sandwiched between the second magnetic layer and the third magnetic layer, the second non-magnetic intermediate layer allowing the second magnetic layer and the third magnetic layer to be exchange-coupled such that magnetization directions thereof are anti-parallel to each other under no magnetic field, the stack being adapted such that sense current flows in a direction that is perpendicular to a film surface thereof; and a bias magnetic layer which is provided on a side of the stack, the side being opposite to an air bearing surface of the stack, the bias magnetic layer applying a bias magnetic field to the stack in a direction that is perpendicular to the air bearing surface.
    • 磁场检测元件包括:堆叠,其包括其磁化方向根据外部磁场而变化的第一,第二和第三磁性层,夹在第一磁性层和第二磁性层之间的第一非磁性中间层 在第一磁性层和第二磁性层之间产生磁阻效应的第一非磁性中间层和夹在第二磁性层和第三磁性层之间的第二非磁性中间层,第二非磁性中间层 中间层,允许第二磁性层和第三磁性层交换耦合,使得其磁化方向在没有磁场的情况下彼此反平行,所述堆叠适于使得感测电流沿垂直于 其膜表面; 以及偏置磁性层,其设置在所述堆叠的一侧,所述侧面与所述堆叠的空气支承表面相对,所述偏置磁性层沿垂直于所述空气轴承的方向向所述堆叠施加偏置磁场 表面。
    • 9. 发明申请
    • THERMALLY-ASSISTED MAGNETIC HEAD
    • 热辅助磁头
    • US20120188859A1
    • 2012-07-26
    • US13013025
    • 2011-01-25
    • Shinji HARATsutomu ChouKoji ShimazawaDaisuke MiyauchiKosuke Tanaka
    • Shinji HARATsutomu ChouKoji ShimazawaDaisuke MiyauchiKosuke Tanaka
    • G11B13/04G11B13/08
    • G11B5/314G11B5/6088G11B2005/0021
    • A thermally-assisted magnetic head that includes an air bearing surface facing a recording medium and that performs magnetic recording while heating the recording medium includes: a magnetic recording element including a pole of which one edge part is positioned on the air bearing surface and that generates magnetic flux traveling toward the magnetic recording medium; a waveguide configured with a core through which light propagates and a cladding, at least one part of which extends to the air bearing surface, surrounding the periphery of the core; a plasmon generator that faces a part of the core and that extends to the air bearing surface. The plasmon generator is configured with a first part and a second part that are joined; the first part that is positioned on the air bearing surface side and that is made of a high melting point material, and the second part that is positioned away from the air bearing surface and that is made of a material with a small value ∈″, which is an imaginary component of permittivity.
    • 一种热辅助磁头,其包括面向记录介质的空气轴承表面并且在加热记录介质的同时进行磁记录的磁辅助磁头包括:磁记录元件,其包括:一个边缘部分位于空气轴承表面上并产生 向磁记录介质传播的磁通量; 配置有光传播的芯的波导和包围,其至少一部分延伸到空气支承表面,围绕芯的周边; 等离子体发生器,其面向芯部的一部分并且延伸到空气轴承表面。 等离子体发生器配置有连接的第一部分和第二部分; 位于空气轴承面侧并由高熔点材料制成的第一部分和远离空气轴承表面并由具有小值∈“的材料制成的第二部分, 这是介电常数的虚部。