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Wavelength Dependence of the Polarization Singularities in a Two-Mode Optical Fiber

机译:两模光纤中偏振奇异点的波长相关性

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We present here an experimental demonstration of the wavelength dependence of the polarization singularities due to linear combination of the vector modes excited directly in a two-mode optical fiber. The coherent superposition of the vector modes excited by linearly polarized Gaussian beam as offset skew rays propagated in a helical path inside the fiber results in the generation of phase singular beams with edge dislocation in the fiber output. The polarization character of these beams is found to change dramatically with wavelength—from left-handed elliptically polarized edge dislocation to right-handed elliptically polarized edge-dislocation through disclinations. The measured behaviour is understood as being due to intermodal dispersion of the polarization corrections to the propagating vector modes, as the wavelength of the input beam is scanned.
机译:我们在这里展示了由于在双模光纤中直接激发的矢量模的线性组合而导致的偏振奇异性的波长依赖性的实验演示。当线性偏高斯光束在光纤内部的螺旋路径中传播时,线性偏振高斯光束所激发的矢量模式的相干叠加导致光纤输出中边缘错位的相位奇异光束的产生。发现这些光束的偏振特性会随波长发生显着变化-从左旋椭圆偏振边缘位错到右旋椭圆偏振边缘位错。所测量的行为被理解为是由于在扫描输入光束的波长时偏振校正对传播的矢量模式的模态色散。

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