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    • 2. 发明授权
    • Magnetic lens, magnetic reproducing element, reproducing apparatus and reproducing method
    • 磁性透镜,磁性再现元件,再现装置和再现方法
    • US06690624B2
    • 2004-02-10
    • US10188112
    • 2002-07-03
    • Katsusuke ShimazakiYoshitane Tsuburaya
    • Katsusuke ShimazakiYoshitane Tsuburaya
    • G11B1100
    • G11B11/10547G11B11/10534G11B11/10554G11B11/1058
    • A magnetic lens has a reproducing layer and a magnetic slit. When the leak magnetic field Hlk of a recording magnetic domain on a recording disk exceeds the coercive force He of the magnetic slit, the magnetization in the magnetic slit is inverted into the same direction as that of the magnetization of the recording magnetic domain. Transition occurs from the in-plane magnetization to the perpendicular magnetization in a magnified area of the reproducing layer in which the temperature exceeds the critical temperature Tcr. The upward magnetization in the magnetic slit is transferred thereto. The magnetization information on the recording magnetic domain is reproduced with amplified signal intensity on the basis of the magneto-optical effect by detecting the reflected light beam of the reproducing light beam from the magnified area. A plurality of minute magnetic domains contained in an object can be detected respectively at a high sensitivity in an independent manner.
    • 磁性透镜具有再现层和磁性狭缝。 当记录盘上的记录磁畴的泄漏磁场Hlk超过磁缝的矫顽力He时,磁缝中的磁化反转成与记录磁畴的磁化方向相同的方向。 在超过临界温度Tcr的再现层的放大区域中,从面内磁化发生到垂直磁化的转变。 磁性狭缝中的向上磁化转移到其上。 基于磁光效应,通过从放大区域检测再现光束的反射光束,以放大的信号强度再现记录磁畴上的磁化信息。 可以独立地以高灵敏度分别检测包含在物体中的多个微小磁畴。
    • 4. 发明申请
    • LIQUID CRYSTAL DISPLAY
    • 液晶显示器
    • US20110157521A1
    • 2011-06-30
    • US13055158
    • 2009-07-22
    • Katsusuke ShimazakiYoichi OgawaEiji KoyamaMasataka Sato
    • Katsusuke ShimazakiYoichi OgawaEiji KoyamaMasataka Sato
    • G02F1/13357
    • G02B5/045G02B6/0038G02B6/0051G02B6/0053G02B6/0055G02F1/133504
    • A liquid crystal display according to the present invention includes a light source, an optical control member, and a liquid crystal display panel. Said optical control member includes a base having optical transparency and a plurality of linear structures provided on said base, a section of the linear structure orthogonal to its extending direction includes a first sectional portion having a triangular shape defined by first to third sides, and a second sectional portion having a plurality of triangular structures each having a smaller area than the first sectional portion and defined by fourth to sixth sides, the first side of the first sectional portion is abutted on and parallel to a surface of said base, the second sectional portion is provided on the second side of the first sectional portion, and the fourth side of the second sectional portion is abutted on and parallel to the second side of the first sectional portion. Said liquid crystal display panel having a polarizing plate arranged in a direction to transmit a P-polarized component is provided on the side of the light output surface of said optical control member. Therefore, the liquid crystal display according to the present invention can solve the problems of color separation and insufficient luminance.
    • 根据本发明的液晶显示器包括光源,光学控制部件和液晶显示面板。 所述光学控制构件包括具有光学透明度的基座和设置在所述基座上的多个线性结构,与其延伸方向垂直的线性结构的一部分包括具有由第一至第三侧限定的三角形形状的第一截面部分,以及 第二截面部分具有多个三角形结构,每个三角形结构具有比第一截面部分更小的面积并且由第四至第六侧限定,第一截面部分的第一侧邻接并平行于所述基部的表面,第二部分 部分设置在第一截面部分的第二侧上,第二截面部分的第四侧邻接并平行于第一截面部分的第二侧。 在所述光学控制部件的光输出面的一侧,设置具有配置在透射P偏振成分的方向上的偏光板的液晶显示面板。 因此,根据本发明的液晶显示器可以解决色彩分离和亮度不足的问题。