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    • 6. 发明授权
    • Optical beam scanner with rotating transmissive optics
    • 具有旋转透射光学的光束扫描仪
    • US5646764A
    • 1997-07-08
    • US443297
    • 1995-05-17
    • Gerald T. MooreKarl W. KochEric C. Cheung
    • Gerald T. MooreKarl W. KochEric C. Cheung
    • G02B26/10G02B26/08H01S3/08H01S3/10
    • G02F1/3525G02B26/10
    • The present invention is a beam scanner for use about a nonlinear optical crystal for frequency conversion. The scanner oscillates the high power laser beam passing through the crystal to reduce heat damage and does not change the direction or the position of the beam upon exiting the scanner. A pair of thick optical plates are affixed to a driven axle being parallel to the laser beam direction. The first plate is mounted at a given angle to the axle and the second plate is mounted at the same but negative angle to the axle so that they are mirror images about the crystal. As the axle rotates, the laser beam moves through the crystal in a cylindrical pattern and due to the manner of mounting the plates, the exiting laser beam is not displaced from the original beam direction or position. The beam scanner may be inserted into an existing optical resonator, for example, without modifications thereto.
    • 本发明是用于频率转换的非线性光学晶体使用的光束扫描器。 扫描器振荡通过晶体的高功率激光束,以减少热损伤,并且不会在离开扫描仪时改变光束的方向或位置。 一对厚的光学板固定在平行于激光束方向的从动轴上。 第一板以相对于轴的给定角度安装,并且第二板以与轴相同但负角的方式安装,使得它们是围绕晶体的镜像。 当轴旋转时,激光束以圆柱形图案移动通过晶体,并且由于安装板的方式,出射的激光束不会从原始的光束方向或位置移位。 光束扫描器可以插入到现有的光学谐振器中,例如,不对其进行修改。
    • 7. 发明授权
    • High efficiency solid state raman laser system
    • 高效固态拉曼激光系统
    • US5796761A
    • 1998-08-18
    • US712251
    • 1996-09-11
    • Hagop InjeyanEric C. CheungJames G. Ho
    • Hagop InjeyanEric C. CheungJames G. Ho
    • H01S3/30
    • H01S3/30H01S3/08054H01S3/094026H01S3/109
    • A high efficiency solid state Raman laser system for shifting the frequency of an input beam emitted by a laser pumping system is described. The laser pumping system suppresses relaxation oscillations in the input beam and emits a constant power, mode-locked pulse train. A solid Raman medium is disposed inside a Raman resonator cavity to shift the frequency of the input beam to produce a Raman beam. The frequency of the Raman beam is finely tuned in the resonator cavity to eliminate high order Raman shifted wavelengths. The polarization of the Raman beam is selected using a polarizing element disposed in the resonator cavity. The Raman beam frequency is shifted using a non-linear medium inside the resonator cavity. The non-linear medium is preferably a frequency doubler. The Raman laser system is particularly suitable for producing high-quality yellow light for guide star applications.
    • 描述了用于移动由激光泵送系统发射的输入光束的频率的高效率固态拉曼激光器系统。 激光泵浦系统抑制输入光束中的松弛振荡,并发出恒定功率的锁模脉冲串。 固体拉曼介质设置在拉曼谐振腔内部,以移动输入光束的频率以产生拉曼光束。 拉曼光束的频率在谐振腔内被微调,以消除高阶拉曼偏移波长。 使用设置在谐振器腔中的偏振元件来选择拉曼光束的偏振。 拉曼光束频率使用谐振腔内的非线性介质移位。 非线性介质优选为倍频器。 拉曼激光系统特别适用于生产用于导星应用的高品质黄光。