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    • 1. 发明授权
    • Laser beam scanner and its fabricating method
    • 激光束扫描器及其制造方法
    • US4957336A
    • 1990-09-18
    • US269412
    • 1988-11-10
    • Shin-ya HasegawaMasayuki KatoFumio YamagishiHiroyuki IkedaTakefumi Inagaki
    • Shin-ya HasegawaMasayuki KatoFumio YamagishiHiroyuki IkedaTakefumi Inagaki
    • G02B26/10
    • G02B26/106Y10S359/90
    • A high precision laser beam scanner is provided which is able to shape a beam generated by a laser, suppress the influence of jitter of a scanning beam due to mode hopping of a semiconductor laser, and reduce aberration of the scanning beam. A beam source generates a semiconductor laser beam, which is diffracted by a rotary hologram, forming a scanning beam on a surface to be scanned. An aberration correcting stationary hologram is disposed between the beam source and the rotary hologram. The stationary hologram is constructed with an object wave and a reference wave, which interfere on a stationary hologram substrate subject so that an aberration of the scanning beam on the surface to be scanned shall be corrected. The object wave is a spherical wave which has an aberration, a wave length shorter than that of the semiconductor laser beam, and an incident angle which is not vertical but is inclined with respect to the stationary hologram substrate. A method for fabricating the laser beam scanner is also provided.
    • 提供了能够对由激光产生的光束进行成形的高精度激光束扫描器,抑制由于半导体激光器的跳跃而导致的扫描光束的抖动的影响,并且减小扫描光束的像差。 光束源产生通过旋转全息图衍射的半导体激光束,在要扫描的表面上形成扫描光束。 像差校正固定全息图设置在光束源和旋转全息图之间。 固定全息图由对象波和参考波构成,其干涉固定的全息图基板对象,使得要扫描的表面上的扫描光束的像差被校正。 对象波是具有像差,波长短于半导体激光束的像差的球面波,并且不是垂直但相对于静止全息图基板倾斜的入射角。 还提供了一种用于制造激光束扫描器的方法。
    • 6. 发明授权
    • Optical device and optical storage device
    • 光学设备和光学存储设备
    • US06888786B2
    • 2005-05-03
    • US10623979
    • 2003-07-21
    • Nobuhide AoyamaShin-ya Hasegawa
    • Nobuhide AoyamaShin-ya Hasegawa
    • G02B5/30G11B7/12G11B7/125G11B11/105G11B7/00
    • G11B7/1353G02B5/3083G11B7/123G11B7/1263G11B7/1356G11B7/1359G11B11/10545
    • An optical device including a light source for emitting diverging light, a polarizing beam splitter for transmitting or reflecting the diverging light according to a polarized light component, a collimator lens for converting the diverging light transmitted through the polarizing beam splitter into collimated light, and an objective lens for focusing the collimated light on an object. The optical device further includes an optical element arranged between the collimator lens and the objective lens for producing a phase difference of +90°±15° or −90°±15° between P-polarized light and S-polarized light. The optical element has a principal axis perpendicular or parallel to a plane of incidence of the diverging light on the polarizing beam splitter. For example, the optical element is provided by a quarter-wave plate having an optic axis perpendicular or parallel to the plane of incidence of the diverging light on the polarizing beam splitter.
    • 一种光学装置,包括用于发射发散光的光源,用于根据偏振光分量透射或反射发散光的偏振分束器,用于将透射通过偏振分束器的发散光转换成准直光的准直透镜,以及 用于将准直光聚焦在物体上的物镜。 光学装置还包括布置在准直透镜和物镜之间的光学元件,用于在P偏振光和S偏振光之间产生+ 90°±15°或-90°±15°的相位差。 光学元件具有与偏振分束器上的发散光的入射平面垂直或平行的主轴。 例如,光学元件由具有垂直于或平行于偏振分束器上的发散光的入射平面的光轴的四分之一波片提供。
    • 7. 发明授权
    • Optical head and information storage device
    • 光头和信息存储设备
    • US07106664B2
    • 2006-09-12
    • US11047185
    • 2005-01-31
    • Shin-ya HasegawaFumihiro Tawa
    • Shin-ya HasegawaFumihiro Tawa
    • G11B7/135G02B1/10
    • G11B7/1387B82Y10/00G11B7/122
    • An optical head including a first dielectric layer having a first refractive index, a pair of second dielectric layers located adjacent to the first dielectric layer on both sides thereof, each of the second dielectric layers having a second refractive index larger than the first refractive index, a pair of third dielectric layers located adjacent to the second dielectric layers, and a pair of fourth dielectric layers located adjacent to the third dielectric layers, each of the fourth dielectric layers having a third refractive index larger than the first refractive index. Light is incident on the optical head in a direction orthogonal to a layering direction of the first to fourth dielectric layers. The first dielectric layer and each of the third dielectric layers have different refractive indices or different thicknesses.
    • 一种光头,包括具有第一折射率的第一电介质层和位于其两侧与第一电介质层相邻的一对第二电介质层,每个第二电介质层的第二折射率大于第一折射率, 位于第二电介质层附近的一对第三电介质层和位于第三电介质层附近的一对第四电介质层,每个第四电介质层的第三折射率大于第一折射率。 光在与第一至第四电介质层的分层方向正交的方向上入射到光学头上。 第一电介质层和第三电介质层中的每一个具有不同的折射率或不同的厚度。