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Pancharatnam-Berry phase optical elements for generation and control of complex light: generalized superelliptical q-plates

机译:PANCHARATNAM-BERRY相位光学元件用于复杂光的产生和控制:广义超级型Q-板

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We present newly conceived liquid-crystal-based retardation waveplates in which the optic axis distribution has a "superelliptically" symmetric azimuthal structure with a topological charge q superimposed. Such devices, named superelliptical q-plates, act as polarization-to-spatial modes converters that can be used to produce optical beams having peculiar spiral spectra. These spectra reflect the topological charge of the optic axis distribution as well as the symmetry properties of the underlying superellipse. The peculiar capability of q-plates of producing optical modes entangled with respect to spin and orbital angular momentum is here extended to superelliptical q-plates in order to create more complex optical modes structurally inseparable with respect to polarization and spatial degrees of freedom. Such superelliptical modes can play a crucial role in studying polarization singularities or to develop polarization metrology.
机译:我们提出了新构思的基于液晶的延迟波形,其中光轴分布具有“超娇娇”对称方形方形结构,叠加拓扑电荷Q。这种名为超级椭圆形Q板的这些装置充当可用于产生具有特殊螺旋光谱的光束的偏振到空间模式转换器。这些光谱反映了光轴分布的拓扑电荷以及底层超细的对称性。关于旋转和轨道角动量缠结的产生光学模式的Q-板的特殊能力在此延伸到超级型Q-板,以便在对极化和空间自由度的间接和空间程度之间形成更复杂的光学模式。这种超级塑性模式可以在研究偏振奇异性或发展极化计量方面发挥至关重要的作用。

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