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    • 2. 发明申请
    • LIQUID CRYSTAL OPTICAL DEVICE MANUFACTURING PROCESS
    • 液晶光学器件制造工艺
    • US20090109387A1
    • 2009-04-30
    • US12295692
    • 2007-11-29
    • Akira SakaiHirokatsu MiyataYasufumi AsaoYohei IshidaPhilip J. MartinAvi Bendavid
    • Akira SakaiHirokatsu MiyataYasufumi AsaoYohei IshidaPhilip J. MartinAvi Bendavid
    • G02F1/1337
    • G02F1/133734
    • A manufacturing method of a liquid crystal optical device is provided including an alignment film forming step of forming an alignment film containing silicon oxide on a substrate, and a liquid crystal cell forming step of disposing a pair of substrates at least one of which the alignment film has been formed on, opposite to each other interposing a liquid crystal therebetween. In the alignment film forming step, the substrate surface is bombarded with a plasma beam generated by vacuum arc discharge using a cathode containing silicon, where the substrate is disposed on the course of the plasma beam obliquely with an angle. When the plasma beam bombards the substrate surface, plasma ions in the plasma beam have higher kinetic energy or higher flux density than plasma ions in a plasma beam which, if bombarding the substrate obliquely at the angle, form a film having a column structure.
    • 提供了一种液晶光学器件的制造方法,包括:在基板上形成含有氧化硅的取向膜的取向膜形成工序;以及液晶单元形成工序,配置一对基板,至少其中一个取向膜 彼此相对地形成在其间插入液晶。 在取向膜形成步骤中,使用包含硅的阴极通过真空电弧放电产生的等离子体束来轰击衬底表面,其中衬底以等角度倾斜地设置在角度上。 当等离子体束轰击衬底表面时,等离子体束中的等离子体离子具有比等离子体束中的等离子体离子更高的动能或更高的通量密度,如果以倾斜方式以该角度轰击衬底,则其形成具有柱结构的膜。
    • 6. 发明授权
    • Acoustic wave receiving apparatus
    • 声波接收装置
    • US09366564B2
    • 2016-06-14
    • US14115970
    • 2012-05-23
    • Yasufumi AsaoTakao Nakajima
    • Yasufumi AsaoTakao Nakajima
    • G01H9/00A61B5/00
    • G01H9/00A61B5/0059
    • Use of an acoustic wave receiving apparatus which includes: a resonator including a first mirror on which measurement light is incident, a second mirror which is arranged to face the first mirror and on which acoustic waves from an object are incident, an acoustic wave reception layer interposed between the first mirror and the second mirror, and a compensation layer; and a detector for detecting a variation in an optical path length between the first mirror and the second mirror that occurs in response to deformation of the acoustic wave reception layer caused by incidence of the acoustic waves, wherein the variation in the optical path length due to a film thickness distribution of the acoustic wave reception layer is compensated by refraction in the compensation layer.
    • 一种声波接收装置的应用,包括:谐振器,包括测量光入射的第一反射镜,布置成面对第一反射镜的第二反射镜,来自物体的声波入射;声波接收层 插入在第一反射镜和第二反射镜之间,以及补偿层; 以及检测器,用于检测响应于由声波入射引起的声波接收层的变形而发生的第一反射镜和第二反射镜之间的光路长度的变化,其中由于 通过在补偿层中的折射来补偿声波接收层的膜厚度分布。