搜索

x
中国物理学会期刊

可自适应补偿热透镜效应的固体激光谐振腔

CSTR: 32037.14.aps.49.1495

A SOLID STATE LASER RESONATOR CAPABLE OF COMPENSATING THERMAL LENS EFFECT ADAPTIVELY

CSTR: 32037.14.aps.49.1495
PDF
导出引用
  • 提出了一种新的固体激光器的谐振腔结构,其主要特点是,在腔内引入一较短焦距的固定透镜,并将激光介质,即焦距可变的热透镜,置于它的焦点处,组成一特殊的两透镜组.利用变换圆图解方法分析表明,该透镜组具有光学‘镇定器’的作用;利用这种谐振腔,通过自适应地轴移调节一个腔镜,可以解决较大功率固体激光器在热透镜效应大幅度变化情况下的基本光学模的动力学稳定运行;同时,保持激光介质及两端镜处的基模光斑尺寸不变.

     

    A novel resonator structure for solid state laser is proposed. A lens with short focal length is introduced in the resonator, and the laser crystal (thermal lens) is put at its focusing point, so a special lens set is composed . By using the transform circle approach it is found that the lens set functions as an optical ‘ballast’. With adjusting one end mirror along optical axis adaptively such a resonator may guarantee TEM00 mode dynamic stable operation of high-power solid state laser while thermal focal length varies within a wide range. While the beam spots of TEM00 mode at the laser crystal and end mirrors keep unchangeable.

     

    目录

    /

    返回文章
    返回