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    • 43. 发明授权
    • Laser machining apparatus with rotatable phase grating
    • 具有旋转相位光栅的激光加工设备
    • US6031201A
    • 2000-02-29
    • US890128
    • 1997-07-09
    • Jun AmakoMasami MuraiTsutomu OtaTomio Sonehara
    • Jun AmakoMasami MuraiTsutomu OtaTomio Sonehara
    • B23K26/06B23K26/067B23K26/40G02F1/1343
    • B23K26/0676B23K26/0622B23K26/066B23K26/067G02F1/13439
    • A laser machining method and apparatus for performing high-speed and high-precision machining on a thin film deposited on a substrate, as well as a liquid crystal panel. The apparatus includes: a plurality of pulse laser generators; a system for alternately driving a plurality of pulse laser generators so that the plurality of pulse laser generators generate laser beams having a delay in phase between each other; a system for making the laser beams generated by the plurality of laser beam generators equal in quality; a system for converting the laser beams generated by the plurality of laser beam generators into elliptically polarized laser beams; and a system for dividing each laser beam emitted by each of the plurality of laser beam generators into a plurality of laser beams; whereby an object to be processed is selectively illuminated with the plurality of laser beams produced by the beam-dividing system. The system for dividing each laser beam emitted by each of the plurality of laser beam generators into a plurality of laser beams is embodied by a phase grating. The phase grating has a structure on its surface which divides each laser beam into a sub plurality of laser beams having equal intensity, from which open grooves having a uniform shape and uniform quality can be formed. The liquid crystal panel includes an electrode structure in which open grooves are formed on an ITO film by using the apparatus. Open grooves (electrode gaps) having a constant width less than 10 .mu.m are uniformly formed in a display area at constant intervals. Thus, the liquid crystal panel according to the present invention provides a much greater contrast ratio and much better visibility performance than conventional techniques, wherein these are primary factors which doming the display quality.
    • 一种用于对沉积在基板上的薄膜以及液晶面板进行高速高精度加工的激光加工方法和装置。 该装置包括:多个脉冲激光发生器; 用于交替地驱动多个脉冲激光发生器的系统,使得所述多个脉冲激光发生器产生具有相互延迟的激光束; 用于使由多个激光束发生器产生的激光束的质量相等的系统; 用于将由所述多个激光束发生器产生的激光束转换为椭圆偏振激光束的系统; 以及用于将由所述多个激光束发生器中的每一个发射的每个激光束分成多个激光束的系统; 从而通过由分束系统产生的多个激光束选择性地照射待处理的物体。 用于将由多个激光束发生器中的每一个发射的每个激光束分割为多个激光束的系统由相位光栅实现。 相位光栅在其表面上具有将每个激光束分成具有相等强度的子多个激光束的表面的结构,由此可以形成具有均匀形状和均匀质量的开口槽。 液晶面板包括通过使用该装置在ITO膜上形成开槽的电极结构。 以恒定间隔均匀地形成具有小于10μm的恒定宽度的开口槽(电极间隙)。 因此,根据本发明的液晶面板提供比常规技术更大的对比度和更好的可见性,其中这些技术是显示质量的主要因素。
    • 44. 发明授权
    • Optical device, analyzing apparatus and spectroscopic method
    • 光学装置,分析装置和光谱方法
    • US08848182B2
    • 2014-09-30
    • US13095103
    • 2011-04-27
    • Jun AmakoKohei Yamada
    • Jun AmakoKohei Yamada
    • G01J3/44G01N21/55G01N21/65
    • G01N21/658G01N21/554
    • An optical device includes a first projection group in which electrically conductive projections are arranged at a first period along a direction parallel to a virtual plane. When light traveling in a direction inclined with respect to a vertical line directed to the virtual plane is incident on the first projection group, surface plasmon resonance is generated at a first resonance peak wavelength and a second resonance peak wavelength. A first resonance peak wavelength band including the first resonance peak wavelength includes an excitation wavelength in surface-enhanced Raman scattering. A second resonance peak wavelength band including the second resonance peak wavelength includes a Raman scattering wavelength in the surface-enhanced Raman scattering.
    • 光学装置包括第一投影组,其中导电突起沿着平行于虚拟平面的方向以第一周期排列。 当在相对于指向虚拟平面的垂直线倾斜的方向上行进的光入射到第一投影组时,在第一共振峰值波长和第二共振峰值波长处产生表面等离子体共振。 包括第一共振峰值波长的第一共振峰值波长包括表面增强拉曼散射中的激发波长。 包括第二谐振峰值波长的第二共振峰值波长包括表面增强拉曼散射中的拉曼散射波长。
    • 46. 发明授权
    • Optical element, liquid crystal device, and display
    • 光学元件,液晶装置和显示器
    • US07755718B2
    • 2010-07-13
    • US12187215
    • 2008-08-06
    • Jun AmakoDaisuke Sawaki
    • Jun AmakoDaisuke Sawaki
    • G02F1/1335G02B5/30G02B27/28
    • G02B5/1809G02F1/133528G02F2001/133548
    • An optical element having a function of splitting incident light into polarized beams includes a substrate transparent for the incident light; a diffractive structure that includes a plurality of concave portions and a plurality of convex portions alternately arranged with each other, each of the plurality of concave portions and convex portions having a rectangular sectional shape and that is provided on a first surface of the substrate; and a grid that includes a plurality of fine lines extending in a single direction and that is provided across a top surface of the diffractive structure on the first surface of the substrate, wherein conditions: d
    • 具有将入射光分离成偏振光束的功能的光学元件包括对入射光透明的基板; 包括多个凹部和交替排列的多个凸部的衍射结构,所述多个凹部和凸部中的每一个具有矩形截面形状,并且设置在所述基板的第一表面上; 以及栅格,其包括在单个方向上延伸的并且在所述基板的第一表面上横跨所述衍射结构的顶表面设置的多个细线,其中条件:d <λ和λ/ n <δ&nlE;λ为 当λ表示入射光的波长时满足; d表示相邻细线之间的距离; δ表示凸部之间的距离; n表示形成基板的材料的折射率。
    • 48. 发明申请
    • OPTICAL ELEMENT, LIQUID CRYSTAL DEVICE, AND DISPLAY
    • 光学元件,液晶装置和显示器
    • US20090040607A1
    • 2009-02-12
    • US12187215
    • 2008-08-06
    • Jun AmakoDaisuke Sawaki
    • Jun AmakoDaisuke Sawaki
    • G02B27/28G02B27/10G02F1/1335
    • G02B5/1809G02F1/133528G02F2001/133548
    • An optical element having a function of splitting incident light into polarized beams includes a substrate transparent for the incident light; a diffractive structure that includes a plurality of concave portions and a plurality of convex portions alternately arranged with each other, each of the plurality of concave portions and convex portions having a rectangular sectional shape and that is provided on a first surface of the substrate; and a grid that includes a plurality of fine lines extending in a single direction and that is provided across a top surface of the diffractive structure on the first surface of the substrate, wherein conditions: d
    • 具有将入射光分离成偏振光束的功能的光学元件包括对入射光透明的基板; 包括多个凹部和交替排列的多个凸部的衍射结构,所述多个凹部和凸部中的每一个具有矩形截面形状,并且设置在所述基板的第一表面上; 以及网格,其包括沿着单个方向延伸并且跨越所述基底的第一表面上的所述衍射结构的顶表面的多条细线,其中条件为:d <λ和λ/ n <Δλ 当λ表示入射光的波长时满足; d表示相邻细线之间的距离; delta表示凸部之间的距离; n表示形成基板的材料的折射率。