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    • 23. 发明申请
    • Polarizing beam splitting film and polarizing beam splitting prism
    • 偏振分束膜和偏振分束棱镜
    • US20050068622A1
    • 2005-03-31
    • US10952965
    • 2004-09-29
    • Takuji Hatano
    • Takuji Hatano
    • G02B5/30G02B27/28G11B7/00G11B7/125G11B7/1275G11B7/135G11B7/1356G03H1/02
    • G11B7/1275G02B5/3041G02B27/283G11B7/1356G11B2007/0006
    • A polarizing beam splitting film and a polarizing beam splitting prism perform polarizing beam splitting on light in three different wavelength bands with high splitting performance and with low light absorption. The polarizing beam splitting film is built with three film groups that perform polarizing beam splitting on light in wavelength bands centered around 405 nm, 650 nm, and 780 nm. Of the thin films with which the polarizing beam splitting film is built, high-refractive-index ones are formed of titanium dioxide in the film groups for the 650 and 780 wavelength bands and of a mixture (H4) of titanium oxide and lanthanum oxide, which has a lower refractive index but absorbs less light than titanium oxide, in the film group for the 405 nm wavelength band. The polarizing beam splitting film is formed on or in a prism to produce a polarizing beam splitting prism.
    • 偏振分束膜和偏振分束棱镜在三种不同波长带的光线上进行偏振光束分离,具有高分裂性能和低吸收光。 偏振分束膜由三个膜组构成,它们以405nm,650nm和780nm为中心的波长带中的光进行偏振光束分离。 在构成偏振分束膜的薄膜中,在650和780波长带的膜组和二氧化钛和氧化镧的混合物(H4)中由二氧化钛形成高折射率的薄膜, 在405nm波长带的膜组中折射率比钛氧化物低的光吸收较少的光。 偏振分束膜形成在棱镜上或棱镜中,以产生偏振分束棱镜。
    • 25. 发明申请
    • Polarizing beam splitter
    • 极化分束器
    • US20050024725A1
    • 2005-02-03
    • US10902321
    • 2004-07-29
    • Tomokazu TaguchiKazuyuki NishiTakuji HatanoKazuhiko Ishimaru
    • Tomokazu TaguchiKazuyuki NishiTakuji HatanoKazuhiko Ishimaru
    • G02B5/30G02B27/28G11B7/135
    • G02B5/3041
    • The present invention relates to a polarizing beam splitter comprised of a film made of a high-refractivity material and a film made of a low-refractivity material alternately stacked on a substrate. When an incidence angle with respect to a film surface in a particular wavelength is set to be θ (°), conditional expressions: 0.99≦Rs(45)/Rs(θ)≦1.04, 0.96≦Tp(45)/Tp(θ)≦1.05 {Rs(θ): reflectivity of polarized light s at an incidence angle of θ, Tp(θ): transmissivity of polarized light p at an incidence angle of θ, Rs(45): reflectivity of polarized light s at the incidence angle of 45°, Tp(45): transmissivity of polarized light p at the incidence angle of 45°} are satisfied in an entire range of 40≦θ≦50 (°). According to the configuration, the transmissivity of the polarized light p can be prevented from decreasing while maintaining the reflectivity of the polarized light s at nearly 100% with respect to even a broad angle region, where a divergence angle of an incident light is ±5° or above.
    • 本发明涉及一种由高折射率材料制成的薄膜和交替层叠在基板上的由低折射率材料制成的薄膜的偏振分束器。 当相对于特定波长的膜表面的入射角设定为θ(°)时,条件表达式:0.99 <= Rs(45)/ Rs(θ)<= 1.04,0.96 <= Tp(45)/ Tp(theta)<= 1.05 {Rs(theta):入射角θ为偏振光s的反射率,Tp(theta):入射角θ为偏振光p的透射率,Rs(45):极化反射率 光入射角为45°,Tp(45):入射角为45°时的偏振光p的透射率满足40°<= 50°的整个范围。 根据该结构,即使在入射光的发散角为±5°的宽角区域中,也可以防止偏振光p的透射率降低,同时将偏振光的反射率保持在接近100% °以上。
    • 29. 发明授权
    • Sunlight collecting system
    • 阳光收集系统
    • US08379310B2
    • 2013-02-19
    • US12740612
    • 2008-10-27
    • Nobuyoshi MoriTakuji HatanoSetsuo Tokuhiro
    • Nobuyoshi MoriTakuji HatanoSetsuo Tokuhiro
    • G02B1/10
    • G02B5/0858F24S23/79F24S23/82F24S30/452F24S50/20F24S2023/86F24S2023/87Y02E10/40
    • Provided is a highly reliable solar collecting system. Since a concave minor has a reflection film on a base material on the side opposite to the side of a solar light incoming surface, peeling, breaking and the like are suppressed by protecting the reflection film by the base material, even when a dropping material is brought into contact with the side of the reflection film with impact or accumulated dropped materials are periodically cleaned. As an elliptical mirror has a reflection film on the base material on the side of the solar light incoming surface, even when solar light having large energy enters, the solar light is reflected by the reflection surface before reaching the base material and there is a small possibility of having the base material heated.
    • 提供了一种高度可靠的太阳能收集系统。 由于凹形小型物体在与太阳光入射面侧相反的一侧的基材上具有反射膜,因此即使在滴下材料为...时,通过保护基材的反射膜来抑制剥离,断裂等 与反射膜的一侧接触,碰撞或累积落下的物料被定期清洗。 作为椭圆镜,在太阳光入射面侧的基材上具有反射膜,即使当具有大能量的太阳光进入时,太阳光在到达基底材料之前被反射面反射,并且存在小的 使基材加热的可能性。