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    • 3. 发明公开
    • SOLID STATE LASER
    • HALBLEITERLASER
    • EP1670103A4
    • 2006-10-11
    • EP04772034
    • 2004-08-23
    • HAMAMATSU PHOTONICS KKNAKAI SADAO
    • NAKAI SADAOKAWASHIMA TOSHIYUKIKANABE TADASHIKAN HIROFUMI
    • H01S3/042H01S3/06H01S3/094H01S3/0941H01S3/16
    • H01S3/0606H01S3/025H01S3/0407H01S3/042H01S3/0615H01S3/08072H01S3/08095H01S3/0941H01S3/1611H01S3/1643
    • A solid state laser capable of cooling a solid state laser medium to have a uniform temperature along the propagating direction of a light to be amplified. Since cooling water flowing through channels (12a, 12b) is brought into direct contact with a pair of reflective end faces (5a, 5b) of the solid state laser medium (3) in the solid state laser (1), the laser medium (3) heated by excitation light emitted from a semiconductor laser (9) can be cooled efficiently. Since the cooling water flows through the channels (12a, 12b) in the direction substantially perpendicular to the propagation plane P of the light L to be amplified, the solid state laser medium (3) can be cooled to have a uniform temperature along the propagating direction of the light L to be amplified. Consequently, thermal lens effect and thermal double refraction effect can be reduced in the solid state laser medium (3).
    • 一种固态激光器,其能够冷却固态激光介质以沿着要被放大的光的传播方向具有均匀的温度。 由于流过通道12a,12b的冷却水直接接触固态激光器1中的固态激光介质3的一对反射端面5a,5b,所以激光介质( 3)通过从半导体激光器(9)发射的激发光加热可以被有效地冷却。 由于冷却水在大致垂直于要放大的光L的传播平面P的方向上流过通道(12a,12b),所以固态激光介质(3)能够沿着传播方向被冷却以具有均匀的温度 要被放大的光L的方向。 因此,在固态激光介质(3)中可以降低热透镜效应和热双折射效应。