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    • 23. 发明授权
    • Projection screen
    • 投影屏幕
    • US07057809B2
    • 2006-06-06
    • US10474768
    • 2003-03-14
    • Shigeo KubotaJunichi OhsakoMasayasu KakinumaKazuhito Shimoda
    • Shigeo KubotaJunichi OhsakoMasayasu KakinumaKazuhito Shimoda
    • G03B21/56G03B21/60G03B21/14G02B6/10
    • G02B5/285G02B5/0242G02B5/0284G02B5/20G03B21/60
    • A clear image unaffected by the brightness of the projection environment. The projection screen according to the present invention is a projection screen for projecting thereupon narrow-band tricolor wavelength band light to display an image, and comprises an optical thin film (3) which has high reflection properties regarding the narrow-band tricolor wavelength band light, and has high transmission properties regarding at least visible wavelength band light other than the wavelength band light, on a screen base (2). With the projection screen according to the present invention configured as above, the optical thin film (3) serves as a so-called band filter. That is to say, the optical thin film (3) particularly reflects narrow-band tricolor wavelength band light and transmits light of other wavelengths, thereby functioning as a narrow-band tricolor wavelength bandwidth filter acting to separate these.
    • 清晰的图像不受投影环境的亮度的影响。 根据本发明的投影屏幕是用于在其上投射窄带三色波长带光以显示图像的投影屏幕,并且包括对窄带三色波长带光具有高反射特性的光学薄膜(3) ,并且在屏幕底座(2)上具有至少在波长带光以外的至少可见波长带光的透射性。 利用如上构造的根据本发明的投影屏,光学薄膜(3)用作所谓的带式滤波器。 也就是说,光学薄膜(3)特别反映窄带三色波长带光并透射其他波长的光,从而起到用于分离它们的窄带三色波长带宽滤波器的作用。
    • 24. 发明申请
    • Reflecting polarizer and color liquid crystal display apparatus
    • 反射偏振片和彩色液晶显示装置
    • US20060109399A1
    • 2006-05-25
    • US11272643
    • 2005-11-15
    • Shigeo KubotaJunichi OhsakoToshitaka KawashimaHiroyuki Okita
    • Shigeo KubotaJunichi OhsakoToshitaka KawashimaHiroyuki Okita
    • G02F1/1335
    • G02F1/133536G02B5/3041G02F1/133603
    • The present invention has been made to form a reflecting polarizer without using a high-birefringence polymer. The present invention provides a reflecting polarizer that transmits a first linear polarization component that oscillates parallel to a first polarization plane of an incident light and reflects a second linear polarization component that oscillates parallel to a second polarization plane perpendicular to the first polarization plane by utilizing birefringence characteristics to polarize/split the incident light, comprising a dielectric multilayer film obtained by stacking, a plurality of times in an alternate manner, a high refractive index layer formed using a dielectric material having birefringence characteristics, and a low refractive index layer formed using a dielectric material having a refractive index which is substantially the same as one of the refractive indexes that the dielectric material having birefringence characteristics has.
    • 本发明已经形成了不使用高双折射聚合物的反射偏振片。 本发明提供一种反射偏振器,其透射与入射光的第一偏振面平行振荡的第一线性偏振分量,并且通过利用双折射反射与第一偏振面垂直的第二偏振面平行振荡的第二线偏振分量 特征在于使入射光偏振/分离,其特征在于,具有通过使用具有双折射特性的电介质材料形成的高折射率层,以交替的方式层叠多次而获得的电介质多层膜,以及使用 电介质材料的折射率与具有双折射特性的电介质材料的折射率基本相同。
    • 28. 发明授权
    • Genetic recombination laser apparatus and genetic recombination method
using the apparatus
    • 遗传重组激光装置和遗传重组法使用该装置
    • US5916788A
    • 1999-06-29
    • US728917
    • 1996-10-11
    • Shigeo KubotaWerner WiechmannLing Yi Liu
    • Shigeo KubotaWerner WiechmannLing Yi Liu
    • C12N13/00C12N15/00C12N15/87C12N5/04H01S3/10H01S3/30
    • C12N15/87C12M35/02C12N13/00C12N15/00
    • A genetic recombination laser apparatus includes an optical system having a semiconductor laser medium for generating a semiconductor laser light, an Nd:YAG crystal, an LBO and .beta.-BBOs for reducing the wavelength of the laser light, an acoustic optical device and a lens for converging the laser light with a reduced wavelength;. A stage for positioning the focus of the laser light converged by the lens at any arbitrary location on a specimen is provided. The energy of the laser light converged on the specimen is set at a value greater than the bonding energy of the substance composing the wall of the somatic cell. Preferably, the semiconductor laser light is converted into the fifth harmonic of an Nd:YAG laser light having a wavelength of 213 nm and a second harmonic with a wavelength of 532 nm generated in the conversion process is used as for positioning the focus of the laser light converged by the lens on the specimen. The laser apparatus is capable of boring a hole through the wall of a somatic cell of the higher plant for injecting foreign genetic material into the interior of the somatic cell to undergo genetic transformation.
    • 遗传重组激光装置包括具有用于产生半导体激光的半导体激光介质的光学系统,用于减少激光波长的Nd:YAG晶体,LBO和β-BBO,声光学装置和用于 会聚具有降低的波长的激光。 提供了用于将由透镜会聚的激光的焦点定位在样本上的任意任意位置的台。 聚集在样品上的激光的能量设定为大于构成体细胞壁的物质的结合能。 优选地,将半导体激光转换成波长为213nm的Nd:YAG激光的第五谐波,并且在转换处理中产生波长为532nm的二次谐波用于定位激光的焦点 透镜上的光会聚在样品上。 激光装置能够通过高等植物的体细胞的壁镗孔,以将外源遗传物质注入体细胞的内部进行遗传转化。