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Measurement of Airy-vortex beam topological charges based on a pixelated micropolarizer array

机译:基于像素化微偏振器阵列的艾里涡旋束拓扑电荷测量

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In this paper, we numerically studied the intensity patterns and screw phases of an embedded optical vortex in an Airy beam generated by a 3/2 phase pattern imposed on a spatial light modulator. It is found that the optical vortex and the Airy beam's main lobe approach each other during propagation, which means the energy of the Airy beam's intensity peaks can be taken advantage of by the imposed vortices. Based on a pixelated micropolarizer array in the interference path, we succeeded in measuring the integer topological charges up to -10 according to the phase jump. In addition, fractional topological charges were also obtained in the experiment. Both of the experimental results are acquired in a high-precision and robust way. This work will promote potential application of Airy-vortex beams in fields such as optical manipulation, laser processing, and photon entanglement. (C) 2016 Optical Society of America
机译:在本文中,我们通过数值研究了施加在空间光调制器上的3/2相位图产生的艾里光束中嵌入式光学涡旋的强度图和螺旋相位。发现光学涡旋和艾里光束的主瓣在传播过程中相互接近,这意味着艾里光束强度峰值的能量可以通过强加的涡流加以利用。基于干涉路径中的像素化微偏振器阵列,我们成功地根据相跳测量了高达-10的整数拓扑电荷。另外,在实验中也获得了分数拓扑电荷。这两个实验结果都是以高精度和鲁棒性获得的。这项工作将促进艾里涡旋光束在光学操纵,激光加工和光子缠结等领域的潜在应用。 (C)2016美国眼镜学会

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