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    • 2. 发明授权
    • Objective optical system for optical recording media and optical pickup device using it
    • 用于光学记录介质的物镜光学系统和使用它的光学拾取装置
    • US07443779B2
    • 2008-10-28
    • US11019203
    • 2004-12-23
    • Yu KitaharaTetsuya OriToshiaki KatsumaMasao MoriHiromitsu Yamakawa
    • Yu KitaharaTetsuya OriToshiaki KatsumaMasao MoriHiromitsu Yamakawa
    • G11B7/00
    • G11B7/1367G11B7/1374G11B7/13922G11B2007/0006G11B2007/13727
    • An objective optical system includes a diffractive optical element on the light source side of an objective lens for focusing incident light of three different wavelengths with two different numerical apertures onto three different optical recording media. The diffractive optical element is formed of two lens elements made of different materials that are cemented together at a diffractive surface. Three conditions are satisfied so as to achieve optimum imaging. The diffractive surface may be shaped so that the order of the diffracted light of the shortest wavelength λ2 having the largest diffracted intensity is different from the order of the diffracted light of the second wavelength λ2 having the largest diffracted intensity, and the order of the diffracted light of the first wavelength λ1 having the largest diffracted intensity is also different from the order of the diffracted light of the third wavelength λ3 having the largest diffracted intensity.
    • 物镜光学系统包括在物镜的光源侧的衍射光学元件,用于将具有两个不同数值孔径的三种不同波长的入射光聚焦到三种不同的光记录介质上。 衍射光学元件由在衍射表面上胶合在一起的不同材料制成的两个透镜元件形成。 满足三个条件以实现最佳成像。 衍射表面可以被成形为使得具有最大衍射强度的最短波长λ1的衍射光的次序与具有最大衍射强度的第二波长λ2的衍射光的次序不同, 具有最大衍射强度的第一波长λ1的衍射光也与具有最大衍射强度的第三波长λ3的衍射光的顺序不同。
    • 7. 发明申请
    • Objective optical system and optical pickup device using it
    • 物镜光学系统和使用它的光学拾取装置
    • US20050259554A1
    • 2005-11-24
    • US11128279
    • 2005-05-13
    • Toshiaki KatsumaMasao MoriTetsuya OriYu Kitahara
    • Toshiaki KatsumaMasao MoriTetsuya OriYu Kitahara
    • G11B7/135G11B7/00
    • G11B7/1367G11B7/1374G11B7/1376G11B7/13922G11B2007/0006G11B2007/13727
    • An objective optical system is formed of a diffractive optical element with a diffractive surface formed on a planar ‘virtual surface’ (i.e., a surface that would be planar but for the diffractive structure) and an objective lens for focusing three collimated light beams of three different wavelengths at three different numerical apertures onto desired positions of three different recording media with substrates of different thicknesses, such as an AOD, a DVD, and a CD, that introduce different amounts of spherical aberration in the focused beams. The objective optical system provides compensating spherical aberration to the three light beams while keeping equal the distance between the diffractive optical element and the objective lens, and focuses second-order diffracted light of one wavelength and first-order diffracted light of the other two wavelengths. An optical pickup device includes the objective optical system, the recording media, and a light source supplying the three light beams.
    • 物镜光学系统由具有衍射面的衍射光学元件形成,该衍射面形成在平面“虚拟表面”(即,对于衍射结构为平面的表面)和用于聚焦三个准直光束的物镜 不同波长的三个不同数值孔径到具有不同厚度的衬底(例如AOD,DVD和CD)的三种不同记录介质的所需位置,其在聚焦光束中引入不同量的球面像差。 物镜光学系统对三个光束提供补偿球面像差,同时保持衍射光学元件和物镜之间的距离相等,并且聚焦一个波长的二次衍射光和另外两个波长的一次衍射光。 光拾取装置包括物镜光学系统,记录介质和提供三个光束的光源。