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    • 13. 发明授权
    • Diffraction optical element and production method therefor
    • 衍射光学元件及其制造方法
    • US09291753B2
    • 2016-03-22
    • US13805482
    • 2012-02-15
    • Tatsutoshi SuenagaYuka OkadaAkiko Murata
    • Tatsutoshi SuenagaYuka OkadaAkiko Murata
    • G02B5/18G02B27/46B29D11/00
    • G02B5/18B29D11/00269B29D11/00769G02B5/1847G02B5/1876G02B27/46
    • In a diffraction optical element having a structure in which a base and an optical adjustment layer adhere to each other, defects such as cracks and peeling occur in the optical adjustment layer, when the adhesive strength between the base and the optical adjustment layer is degraded. In a diffraction optical element 100 of the present invention, a plurality of anchor grooves 3 are formed in a planar second region 6 of a base 1. Further, a depth of an anchor groove of the plurality of anchor grooves 3, which is positioned on an outermost side, is designed so as to be smaller than a depth of another anchor groove of the plurality of anchor grooves 3, which is positioned on an innermost side. An optical adjustment layer 9 adheres so as to cover a first region 5 in which a diffraction grating 2 is formed and the second region 6 in which the anchor grooves 3 are formed of the base 1.
    • 在具有基底和光学调整层彼此粘合的结构的衍射光学元件中,当基底和光学调节层之间的粘合强度降低时,在光学调节层中发生诸如裂纹和剥离的缺陷。 在本发明的衍射光学元件100中,在基座1的平面的第二区域6中形成有多个锚定槽3,而且,多个锚定槽3的锚定槽的深度位于 最外侧被设计为小于位于最内侧的多个锚定槽3的另一个锚定槽的深度。 光学调整层9粘附以覆盖其中形成衍射光栅2的第一区域5和其中锚定槽3由基底1形成的第二区域6。
    • 14. 发明申请
    • DIFFRACTIVE OPTICAL ELEMENT AND METHOD FOR PRODUCING DIFFRACTIVE OPTICAL ELEMENT
    • 衍射光学元件及其衍射光学元件的制造方法
    • US20130170041A1
    • 2013-07-04
    • US13820842
    • 2012-07-11
    • Yuka OkadaTatsutoshi SuenagaAkiko Murata
    • Yuka OkadaTatsutoshi SuenagaAkiko Murata
    • G02B5/18
    • G02B5/18G02B5/0242G02B5/0278G02B5/1852G02B5/1876
    • A diffractive optical element disclosed in the present application includes a body 102 formed of a first optical material containing a first resin, the body 102 having a surface 102a including a first area 105 at which a diffraction grating 104 is provided and a second area 106 located outer to the first area; an optical adjustment layer 103 formed of a second optical material containing a second resin, the optical adjustment layer 103 being provided on the body while covering the first area and at least a part of the second area 106 of the surface of the body; and an adhesive interface section 109 containing an adhesive material which is adhesive to the second optical material, the adhesive interface section 109 being, at the second area 106 of the surface of the body, at least partially located below the optical adjustment layer 103 and being located at least in a region from the surface to the inside of the body.
    • 本申请中公开的衍射光学元件包括由包含第一树脂的第一光学材料形成的主体102,主体102具有包括设置有衍射光栅104的第一区域105的表面102a和位于 第一区外; 由包含第二树脂的第二光学材料形成的光学调节层103,光学调节层103设置在主体上,同时覆盖主体的第一区域和第二区域106的至少一部分; 以及粘合剂界面部分109,其包含与第二光学材料粘合的粘合剂材料,粘合剂界面部分109在主体表面的第二区域106处至少部分地位于光学调节层103的下面,并且是 至少位于从身体的表面到内部的区域中。
    • 15. 发明申请
    • METHOD FOR MANUFACTURING OPTICAL DIFFRACTION ELEMENT
    • 制造光学衍射元件的方法
    • US20120068368A1
    • 2012-03-22
    • US13375672
    • 2010-06-01
    • Tatsutoshi SuenagaYuka OkadaAkiko Murata
    • Tatsutoshi SuenagaYuka OkadaAkiko Murata
    • B29D11/00
    • G02B5/1895G02B1/041C08L69/00
    • If an optical lens base having a diffraction grating on the surface is made of a resin, a corrosion reaction is produced between the optical lens base and a nanocomposite film material, thus deteriorating performance as a diffractive optical element. In the manufacturing process of a diffractive optical element according to the present invention, the nanocomposite film material is dripped onto a die and then heated and dried, thereby vaporizing away a solvent from the nanocomposite film material. After that, the dies are assembled to form a nanocomposite film with a predetermined thickness on the optical lens base. As a result, a diffractive optical element with excellent optical properties can be obtained without producing a reaction between the optical lens base and the nanocomposite film material.
    • 如果在表面具有衍射光栅的光学透镜基体由树脂制成,则在光学透镜基底和纳米复合膜材料之间产生腐蚀反应,从而劣化作为衍射光学元件的性能。 在根据本发明的衍射光学元件的制造过程中,将纳米复合膜材料滴加到模具上,然后加热干燥,从而从纳米复合膜材料蒸发掉溶剂。 之后,组装模具以在光学透镜基底上形成具有预定厚度的纳米复合膜。 结果,可以获得光学特性优异的衍射光学元件,而不产生光学透镜基底和纳米复合材料之间的反应。
    • 16. 发明申请
    • DIFFRACTIVE OPTICAL ELEMENT AND MANUFACTURING METHOD THEREOF
    • 衍射光学元件及其制造方法
    • US20100246008A1
    • 2010-09-30
    • US12744563
    • 2009-05-13
    • Akiko MurataYuka Okada
    • Akiko MurataYuka Okada
    • G02B5/18B05D5/06B29D11/00
    • G02B5/1814G02B5/1857G02B5/1866
    • A diffractive optical element according to the present invention includes: a body 1 being composed of a first optical material containing a first resin, and having a diffraction grating 2 on a surface thereof; and an optical adjustment layer 3 being composed of a second optical material containing a second resin, and provided on the body 1 so as to cover the diffraction grating 2. The first optical material has a refractive index which is smaller than a refractive index of the second optical material; the refractive index of the first optical material has a wavelength dispersion which is greater than a wavelength dispersion of the refractive index of the second optical material; and a difference in solubility parameter between the first resin and the second resin is no less than 0.8 [cal/cm3]1/2 and no more than 2.5 [cal/cm3]1/2.
    • 根据本发明的衍射光学元件包括:主体1,其由包含第一树脂的第一光学材料组成,并且在其表面上具有衍射光栅2; 以及光学调整层3,其由包含第二树脂的第二光学材料构成,并且设置在主体1上以覆盖衍射光栅2.第一光学材料具有的折射率小于 第二光学材料; 第一光学材料的折射率具有大于第二光学材料的折射率的波长色散的波长色散; 并且第一树脂和第二树脂之间的溶解度参数的差不小于0.8 [cal / cm 3] 1/2且不大于2.5 [cal / cm 3] 1/2。
    • 17. 发明申请
    • DIFFRACTIVE OPTICAL ELEMENT AND METHOD FOR MANUFACTURING SAME
    • 衍射光学元件及其制造方法
    • US20090180186A1
    • 2009-07-16
    • US12295525
    • 2007-04-05
    • Takamasa AndoTsuguhiro KorenagaMasa-aki SuzukiYuka Okada
    • Takamasa AndoTsuguhiro KorenagaMasa-aki SuzukiYuka Okada
    • G02B5/18G02B1/00B05D5/06
    • G02B1/14B29C39/025B29C39/026B29L2011/00G02B1/105G02B1/111G02B5/18G02B5/1847
    • A diffractive optical element that can maintain transparency and be molded easily, and a method for manufacturing the same are provided.A diffractive optical element (10) includes a substrate (11), a protective film (13a, 13b), and a diffraction grating (12a, 12b) disposed between the substrate (11) and the protective film (13a, 13b), wherein the diffraction grating (12a, 12b) is formed of a composite material containing a resin and inorganic particles, a volume ratio of the inorganic particles with respect to the composite material is equal to or smaller than 50% by volume, and the diffraction grating (12a, 12b) has a thickness of equal to or smaller than 20 μm. Since the diffractive optical element (10) uses the composite material containing the resin and the inorganic particles as a material for the diffraction grating (12a, 12b), which is relatively difficult to process, the moldability improves compared with the conventional case of using glass, etc.
    • 可以容易地保持透明性和模制性的衍射光学元件及其制造方法。 衍射光学元件(10)包括基板(11),保护膜(13a,13b)和设置在基板(11)和保护膜(13a,13b)之间的衍射光栅(12a,12b),其中 衍射光栅(12a,12b)由包含树脂和无机颗粒的复合材料形成,无机颗粒相对于复合材料的体积比等于或小于50体积%,衍射光栅 12a,12b)具有等于或小于20μm的厚度。 由于衍射光学元件(10)使用包含树脂和无机颗粒的复合材料作为相对难以处理的衍射光栅(12a,12b)的材料,与使用玻璃的常规情况相比,成型性提高 等等