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Tunable vector-vortex beam optical parametric oscillator

机译:可调矢量涡旋光束光学参量振荡器

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摘要

Vector-vortex beams, having both phase and polarization singularities, are of great interest for a variety of applications. Generally, such beams are produced through systematic control of phase and polarization of the laser beam, typically external to the source. However, efforts have been made to generate vector-vortex beams directly from the laser source. Given the operation of the laser at discrete wavelengths, vector-vortices are generated with limited or no wavelength tunability. Here, we report an experimental scheme for the direct generation of vector-vortex beams. Exploiting the orbital angular momentum conservation and the broad wavelength versatility of an optical parametric oscillator, we systematically control the polarization of the resonant beam using a pair of intracavity quarter-wave plates to generate coherent vector-vortex beam tunable across 964–990 nm, with output states represented on the higher-order Poincaré sphere. The generic experimental scheme paves the way for new sources of structured beams in any wavelength range across the optical spectrum and in all time-scales from continuous-wave to ultrafast regime.
机译:同时具有相位和偏振奇异性的矢量涡旋光束对于各种应用都引起了极大的兴趣。通常,这种光束是通过系统地控制激光束的相位和偏振来产生的,通常是在光源外部。然而,已经做出努力直接从激光源产生矢量涡旋光束。给定激光器在离散波长下的运行,矢量涡流的波长可调性有限或没有。在这里,我们报告了一种直接产生矢量涡旋光束的实验方案。利用光学参量振荡器的轨道角动量守恒和广泛的波长通用性,我们使用一对腔内四分之一波片系统地控制谐振光束的偏振,以产生可在964-990 nm范围内调谐的相干矢量涡旋光束,高阶庞加莱球上表示的输出状态。通用实验方案为在光谱范围内的任何波长范围内以及从连续波到超快状态的所有时间范围内的结构化光束的新来源铺平了道路。

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