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Rotational Frequency Shift in Cylindrical Vector Beam due to Skew Rays in Few-mode Optical Fibers

机译:少量模式光纤中的偏斜射线引起的圆柱矢量光束的旋转频移

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We report here the demonstration of rotational Doppler Effect (RDE) and measurement of rotational frequency shifts (RFS) in single-charge helical-phased cylindrical vector beams directly generated using a two-mode optical fiber. The vector-vortex beam with a shifted vortex core, generated by propagating the Gaussian laser beam as an offset-skew ray selectively excites both the fundamental and first low-order waveguide modes simultaneously in the two-mode optical fiber. Rotation frequency of the output beam around a shifted axis of the beam is measured as a function the analyzer rotation for changing handedness of the input circular polarization to demonstrate RDE in the directly excited cylindrical vector-vortex beams. Even small variations in the input launch conditions were found to dramatically alter the stability of the vortex beams and hence the demonstration of RDE.
机译:我们在这里报告的演示了旋转多普勒效应(RDE)和使用双模光纤直接生成的单电荷螺旋相控圆柱矢量光束中旋转频移(RFS)的测量。通过将高斯激光束传播为偏移偏斜射线而生成的具有偏移涡旋芯的矢量涡旋束在双模光纤中同时选择性地激发基本和第一低阶波导模。测量输出光束围绕光束移动轴的旋转频率,该频率是分析仪旋转的函数,用于改变输入圆偏振的旋度,以在直接激发的圆柱矢量涡旋光束中显示RDE。发现即使在输入发射条件上有很小的变化,也能显着改变涡旋光束的稳定性,从而证明了RDE的有效性。

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