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Self-action of laser beams in photorefractive crystals with external applied AC or DC electric fields

机译:外部施加AC或DC电场的光折变晶体中激光束的自作用

摘要

The purpose of the dissertation work is to study theoretically and experimentally the influence of the additional photoelastic contribution to the modulation of the optical properties by the space-charge field and the effect of the optical activity on self-focusing and self-bending of laser beams.We have developed a theoretical model of self-action of one-dimensional light beams in (1 1 0) and (1 1 -2)-cut photorefractive sillenite crystals of point group 23 taking into account the additional contribution of the photoelastic effect to the optical properties of the medium, the induced birefringence and the optical activity.The additional photoelastic contribution to the optical properties of the photorefractive cubic medium in some cases can reduce the necessary value of the electric field amplitude by a factor of 1.7 to observe the same magnitude of the self-action effect as in existing theoretical models.The presented theoretical model predicts the possibility to observe quasi-solitons in cubic photorefractive crystals with a large magnitude of optical activity.The experimental and theoretical studies of the laser beam self-bending in bismuth titanium oxide crystals under applied external alternating fields showed that the self-bending magnitude, the self-bending direction and the form of the beam on the output face of the crystal can be controlled by the input polarization of propagated light if the bias field is applied along the direction [1 -1 1].A theoretical model for the investigation of the self-bending effect in barium titanate crystal (BaTiO3) for a speckled extraordinary light beam taking into account the additional elasto-optic contribution was developed for the first time. The model shows that BaTiO3 crystals exhibit the property of positive or negative gradient lenses depending on whether the speckled laser beam propagates along the optical axis c or in the opposite direction.For the strontium barium niobate crystal we found experimentally that the output beam diameter of a propagating laser beam (633 nm) does not depend on the diameter of the input beam especially along the crystal axis if it lies between 18 m and 40 m. This effect is called optimal focusing.
机译:论文的目的是从理论上和实验上研究附加的光弹性贡献对空间电荷场对光学性质的调制的影响以及光学活性对激光束自聚焦和自弯曲的影响考虑到光弹性效应对光的附加贡献,我们已经建立了在点组23的(1 1 0)和(1 1 -2)切割的光折变亚硅酸盐晶体中一维光束自作用的理论模型。在某些情况下,对光折光立方介质的光学特性的附加光弹性贡献可以将所需的电场幅度值降低1.7倍以观察到相同的结果。自作用效应的大小与现有理论模型相同。所提出的理论模型预测了观测准孤子的可能性在具有较大光学活性的立方光折变晶体中s。铋钛氧化物晶体在施加的外部交变场作用下激光束自弯曲的实验和理论研究表明,自弯曲的大小,自弯曲的方向和屈曲方向如果沿[1 -1 1]方向施加偏置场,则可以通过传播光的输入偏振来控制晶体在输出面上的光束形式。钛酸钡晶体(BaTiO3)是一种有斑点的非常规光束,它是首次考虑到附加的弹光贡献。该模型表明BaTiO3晶体表现出正梯度透镜或负梯度透镜的特性取决于斑点激光束是沿光轴c还是沿相反方向传播。对于铌酸锶钡晶体,我们通过实验发现a的输出光束直径为传播的激光束(633 nm)并不取决于输入光束的直径,特别是沿着晶轴的直径,如果它介于18 µm和40 µm之间。这种效果称为最佳聚焦。

著录项

  • 作者

    Kashin Oleg;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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