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INVESTIGATING NONLINEAR DISTORTION IN THE PHOTO POLYMER MATERIALS

机译:研究光聚合物材料中的非线性变形

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Propagation and diffraction of a light beam through nonlinear materials are effectively compensated by the effect of self-trapping. The laser beam propagating through photo-sensitive polymer PVA/AA can generate a waveguide of higher refractive index in direction of the light propagation. In order to investigate this phenomenon occurring in light-sensitive photopolymer media, the behaviour of a single light beam focused on the front surface of photopolymer bulk is investigated. As part of this work the self-bending of parallel beams separated in spaces during self-writing waveguides are studied. It is shown that there is strong correlation between the intensity of the input beams and their separation distance and the resulting deformation of waveguide trajectory during channels formation. This self-channeling can be modelled numerically using a three-dimension model to describe what takes place inside the volume of a photopolymer media. Corresponding numerical simulations show good agreement with experimental observations, which confirm the validity of the numerical model that was used to simulate these experiments.
机译:通过自捕获的效果有效地补偿了通过非线性材料的光束的传播和衍射。通过光敏聚合物PVA / AA传播的激光束可以在光传播方向上产生高折射率的波导。为了研究在光敏光聚合物介质中发生的这种现象,研究了聚焦在光聚合物体积的前表面上的单光束的行为。作为这项工作的一部分,研究了在自我写入波导期间在空间中分离的平行光束的自弯曲。结果表明,输入光束的强度与它们的分离距离之间存在强烈的相关性以及在形成通道形成期间波导轨迹的变形。这种自信可以使用三维模型在数值上进行数字化以描述光聚合物介质的体积内发生的内容。相应的数值模拟与实验观察结果显示出良好的一致性,这证实了使用用于模拟这些实验的数值模型的有效性。

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