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Generalized Hartmann-Shack array of dielectric metalens sub-arrays for polarimetric beam profiling

机译:电介质金属子阵列的广义Hartmann-Shack阵列,用于极化光束轮廓分析

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To define and characterize optical systems, obtaining the amplitude, phase, and polarization profile of optical beams is of utmost importance. Traditional polarimetry is well established to characterize the polarization state. Recently, metasurfaces have successfully been introduced as compact optical components. Here, we take the metasurface concept to the system level by realizing arrays of metalenses, allowing the determination of the polarization profile of an optical beam. We use silicon-based metalenses with a numerical aperture of 0.32 and a mean measured focusing efficiency in transmission mode of 28% at a wavelength of 1550?nm. Our system is extremely compact and allows for real-time beam diagnostics by inspecting the foci amplitudes. By further analyzing the foci displacements in the spirit of a Hartmann-Shack wavefront sensor, we can simultaneously detect phase-gradient profiles. As application examples, we diagnose the profiles of a radially polarized beam, an azimuthally polarized beam, and of a vortex beam.
机译:为了定义和表征光学系统,获得光束的幅度,相位和偏振分布至关重要。很好地建立了传统的偏振测定法来表征偏振态。近来,超表面已经成功地引入为紧凑的光学组件。在这里,我们通过实现金属感阵列将超表面概念带入系统层次,从而确定光束的偏振分布。我们使用数值孔径为0.32的硅基金属感镜,在1550?nm波长的透射模式下测得的平均聚焦效率为28%。我们的系统非常紧凑,并且可以通过检查焦点振幅来进行实时光束诊断。通过根据Hartmann-Shack波前传感器的精神进一步分析焦点位移,我们可以同时检测相位梯度曲线。作为应用示例,我们诊断了径向偏振光束,方位角偏振光束和涡旋光束的轮廓。

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