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Laser beam deflector based on a domain-inverted electro-optic polymeric waveguide prism array

机译:基于畴反转电光聚合物波导棱镜阵列的激光偏转器

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Abstract: We report the demonstration of a compact laser-beam deflector based on electro-optic prisms formed within a thin-film polymer waveguide. We fabricate planar waveguides using a polymer that can be readily poled and cured through the simultaneous application of a poling voltage and heat. The index of refraction of each prism in the cascade, but not of the surrounding polymer, is modulated by the electro- optic effect through the application of a drive voltage. A laser beam, to be deflected, is coupled into and out of the planar waveguide by cylindrical lenses. The application of a drive voltage creates a sequence of prisms in the planar waveguide, which change the path of propagation of beam through the planar waveguide with a variable angle of refraction depending upon the voltage. The deflection efficiency is observed to be nearly 100 percent and the laser beam maintains its Gaussian intensity profile after propagating through the device. !16
机译:摘要:我们报告了一种基于在薄膜聚合物波导中形成的电光棱镜的紧凑型激光束偏转器的演示。我们使用一种聚合物制造平面波导,该聚合物可以通过同时施加极化电压和热量而容易极化和固化。级联中每个棱镜的折射率,而不是周围聚合物的折射率,通过施加驱动电压通过电光效应进行调制。待偏转的激光束通过柱面透镜耦合进出平面波导。施加驱动电压会在平面波导中创建一系列棱镜,这些棱镜会根据电压改变光束通过平面波导的传播路径,并具有可变的折射角。观察到偏转效率接近100%,并且激光束在通过设备传播后仍保持其高斯强度分布。 !16

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