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Improving purity of the radially polarized beam generated by a geometric phase retarder with spatially variable retardance

机译:提高通过空间可变延迟的几何相位延迟器产生的径向偏振光束的纯度

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摘要

Geometric phase retarders-such as q-plates and S-waveplates-have found wide applications due to simplicity of operational principles and flexibility for the generation of azimuthally symmetric polarization states and optical vortices. Ellipticity of the polarization vector and phase of the generated beam strongly depend on the retardation of the plate. Real devices usually have retardation value slightly different than the nominated one. Previously unattended perturbation of the retardation leads to asymmetry in intensity distribution and variation of ellipticity of the local polarization vector of the generated beam. We elucidate that controlled and intentionally driven azimuthally variable, oscillating perturbation of the retardation reveals the possibility to avoid distortions in the generated beam and leads to the recovery of the symmetrically distributed intensity and polarization (with zero ellipticity) of the beam. Described recovery of the desired polarization state could find application for generation of the high purity beam with azimuthally symmetric polarization, in which the local polarization ellipse has zero ellipticity. (C) 2020 Optical Society of America
机译:几何相位延迟器 - 例如Q板和S波 - 由于操作原理的简单性和用于产生方位称对称偏振态和光学涡流的柔韧性而发现了广泛的应用。产生的偏振载体的椭圆度和产生的光束的相位强烈地取决于板的延迟。真实的设备通常与提名的设备略有不同。先前无人看管的延迟的扰动导致强度分布的不对称性和产生的光束的局部偏振载体的椭圆形的变化。我们阐明控制和有意地驱动的方形变量,延迟的振荡扰动揭示了避免产生的光束中的失真的可能性,并导致梁的对称分布的强度和偏振(具有零椭圆度)的恢复。所描述的所需偏振状态的恢复可以找到具有方位称对称极化的高纯度光束的应用,其中局部偏振椭圆具有零椭圆度。 (c)2020美国光学学会

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    《Applied optics》 |2020年第6期|共9页
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