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    • 6. 发明申请
    • FRESNEL-FLY'S EYE MICROLENS ARRAYS FOR CONCENTRATING SOLAR CELL
    • 用于浓缩太阳能电池的FRESNEL-FLY'S EYE MICROLENS ARRAYS
    • US20120192919A1
    • 2012-08-02
    • US13444923
    • 2012-04-12
    • Yosuke MIZUYAMA
    • Yosuke MIZUYAMA
    • H01L31/052H01L31/0232B29D11/00G02B3/08
    • G02B3/08G02B3/0056H01L31/0543Y02E10/52
    • Optical elements, concentrating photovoltaic devices and methods of forming optical elements are provided. An optical element includes a transparent material including a first surface and a second surface opposite the first surface. The first surface has a Fresnel lens and the second surface has a plurality of microlenses corresponding to the Fresnel lens. One of the first surface and the second surface is configured to receive light. The optical element is configured so that light passing through the optical element is separated into a plurality of beamlets via the plurality of microlenses. The Fresnel lens has a height where, at the height of the Fresnel lens, a diffraction efficiency of at least two different wavelengths of the light passing through the optical element is maximized.
    • 提供了光学元件,聚光光伏器件和形成光学元件的方法。 光学元件包括透明材料,其包括第一表面和与第一表面相对的第二表面。 第一表面具有菲涅尔透镜,第二表面具有对应于菲涅耳透镜的多个微透镜。 第一表面和第二表面中的一个被配置为接收光。 光学元件被配置为使得穿过光学元件的光通过多个微透镜被分离成多个子束。 菲涅尔透镜具有高度,其中在菲涅尔透镜的高度处,通过光学元件的光的至少两个不同波长的衍射效率最大化。
    • 7. 发明申请
    • MICRO-HOLOGRAPHIC DATA STORAGE SYSTEM AND METHOD
    • 微观数据存储系统和方法
    • US20110096653A1
    • 2011-04-28
    • US12770831
    • 2010-04-30
    • Yosuke MIZUYAMARiccardo LETO
    • Yosuke MIZUYAMARiccardo LETO
    • G11B7/00G11B7/24
    • G11B7/00772G11B7/1374G11B7/24079G11B7/24085
    • A micro-holographic data storage system and method. Micro-holograms are written to a data storage medium with two counter-propagating beams via objective recording lenses which have a first numerical aperture (NA) to make the micro-holograms larger. Alternatively, elongated micro-holograms can be produced using counter-propagating beams with different focus points. The micro-holograms are retrieved from the data storage medium using a single beam via an objective reading lens which has a second NA that is higher than the first NA. The data storage medium has a substrate with a plurality of tracks separated by a track pitch. The plurality of micro-holograms are each contained in each of the plurality of tracks, wherein, at least one of the plurality of micro-holograms has a width which is nearly equal to a width of the track pitch.
    • 一种微全息数据存储系统及方法。 通过具有第一数值孔径(NA)的物镜记录透镜将微全息图写入具有两个反向传播光束的数据存储介质,以使微全息图变大。 或者,可以使用具有不同焦点的反向传播光束来产生细长的微全息图。 使用具有比第一NA高的第二NA的物镜读取透镜,使用单个光束从数据存储介质检索微全息图。 数据存储介质具有基板,其具有由轨道间距分开的多个轨道。 多个微全息图分别包含在多个轨道中的每一个中,其中,多个微全息图中的至少一个具有几乎等于轨道间距的宽度的宽度。
    • 8. 发明申请
    • LASER LIGHT SOURCE DEVICE
    • 激光光源设备
    • US20080181264A1
    • 2008-07-31
    • US12021150
    • 2008-01-28
    • Yosuke MIZUYAMAShogo HORINNOUCHI
    • Yosuke MIZUYAMAShogo HORINNOUCHI
    • H01S3/10
    • H01S5/141H01S5/02H01S5/02292H01S5/0687
    • A laser light source device includes: a laser light source, a first optical device that returns some of a beam emitted from the laser light source so as to induce oscillation at a particular wavelength between some of the beam and the laser light source so that the beam emitted from the laser light source becomes close to a single wavelength, and reflects other portion of the emitted beam, a second optical device that forms an interference fringe from a reflected beam from the first optical device, a beam detection unit that detect a main wavelength of a plurality of wavelengths included in a beam derived from the second optical device and detects an ununiform state of the plurality of wavelengths, a partial reflection mirror that transmits some of the reflected beam from the first optical device to the second optical device and reflects the other portion of the reflected beam toward a recording medium, an optical member that integrally includes the first optical device, the second optical device and the partial reflection mirror, and a driving unit that changes a position of the optical member.
    • 激光源装置包括:激光源,第一光学装置,其返回从激光光源发射的一些光束,以便在一些光束和激光光源之间的特定波长处引起振荡,使得 从激光光源发射的光束变得接近单个波长,并且反射所发射光束的其他部分,从来自第一光学装置的反射光束形成干涉条纹的第二光学装置,检测主体的光束检测单元 包括在从第二光学装置导出的光束中的多个波长的波长,并且检测多个波长的不均匀状态;将反射光束从第一光学装置传输到第二光学装置并反射的部分反射镜 朝向记录介质的反射光束的另一部分,一体地包括第一光学装置的光学部件,第二光学部件 以及驱动单元,其改变光学构件的位置。