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Diffractive Microrelief Design for Waveguiding Beam Control

机译:波导束控制的衍射微浮雕设计

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Introduction of diffractive optical elements (DOEs) opened the possibilty to control amplitude-phase distribution in the cross-section of laser beam. In fact, by use of DOE one can form the beam with pregiven behaviour during propagation through waveguide medium. The diffractive microrelief can be realized either on the separated substrate or directly on the waveguide surface. This work is devoted to the theoretical and experimental investigation of diffractive microrelief intended for waveguiding beam control. Experimental results of step-like optical waveguide mode excitation and selection by DOE are presented. Different approaches for synthesis of high-efficient DOEs matched with waveguide modes are discussed. The strategy of the search of waveguide mode with amplitude distribution closed to the illuminating beam amplitude distribution is presented. The phase of found mode can be chosen as DOE phase function.
机译:引入衍射光学元件(DOE)使得控制激光束横截面中的振幅相位分布成为可能。实际上,通过使用DOE,可以在通过波导介质传播期间形成具有预定行为的光束。可以在分离的基板上或直接在波导表面上实现衍射微浮雕。这项工作致力于用于波导束控制的衍射微浮雕的理论和实验研究。给出了通过DOE激发和选择阶梯状光波导模式的实验结果。讨论了与波导模式匹配的高效DOE合成的不同方法。提出了一种在接近辐射光束幅度分布的情况下寻找波导模式的策略。可以将找到的模式的相位选择为DOE相位函数。

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