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Thermal stress and end-bulging in monoclinic crystals: the case study of double tungstates

机译:单斜晶体中的热应力和端凸出:双钨酸酯的案例研究

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摘要

An analytical description of the thermal stress and end-bulging component of thermal lensing is presented for monoclinic laser crystals, taking into account the anisotropy of their optical, thermal, and elastic properties for the first time, to the best of our knowledge. The geometry of longitudinal diode-pumping (plane stress approximation) is considered. The developed approach is applied to the monoclinic double tungstates (MDTs), Yb:KGW, Yb:KYW, and Yb:KLuW, yielding values of normal and shear stresses, tensile stress, and the end-bulging term. We show that for low-symmetry crystals, end-bulging is responsible for the astigmatism of the thermal lens. The geometry of this astigmatism is explained in terms of the principal meridional planes. We show that the crystal cut of the MDTs along the optical indicatrix axis N-g (propagation direction) provides low thermal stress and a purely positive and weakly astigmatic thermal lens, which is a key condition for power scaling and diffraction-limited laser output. (C) 2017 Optical Society of America
机译:对于单岩激光晶体,给出了热透镜的热应力和端凸起分析的分析描述,考虑到他们的光学,热和弹性特性的各向异性,这是我们的最佳知识。考虑纵向二极管泵送(平面应力近似)的几何形状。该发育方法适用于单斜核双钨酸酯(MDT),YB:KGW,YB:KYW和YB:KLUW,产生正常和剪切应力的值,拉伸应力和最终膨胀术语。我们表明,对于低对称晶体,端凸起负责热透镜的散光。在主要的经络平面方面解释了这种散光的几何形状。我们表明,沿光学指示轴轴线N-G(传播方向)的MDT的晶体切割提供低热应力和纯度且弱散散的热透镜,这是功率缩放和衍射限制激光输出的关键条件。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第13期|共10页
  • 作者单位

    Belarusian Natl Tech Univ Ctr Opt Mat &

    Technol 65-17 Nezavisimosti Ave Minsk 220013 Byelarus;

    ITMO Univ 49 Kronverkskiy Pr St Petersburg 197101 Russia;

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  • 正文语种 eng
  • 中图分类 应用;
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