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Measuring Orbital Angular Momentum (OAM) States of Vortex Beams with Annular Gratings

机译:用环形光栅测量轨道角动量(OAM)涡流梁的状态

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Measuring orbital angular momentum (OAM) states of vortex beams is of great importance in diverse applications employing OAM-carrying vortex beams. We present a simple and efficient scheme to measure OAM states (i.e. topological charge values) of vortex beams with annular gratings. The magnitude of the topological charge value is determined by the number of dark fringes after diffraction, and the sign of the topological charge value is distinguished by the orientation of the diffraction pattern. We first theoretically study the diffraction patterns using both annular amplitude and phase gratings. The annular phase grating shows almost 10-dB better diffraction efficiency compared to the annular amplitude grating. We then experimentally demonstrate the OAM states measurement of vortex beams using annular phase grating. The scheme works well even for high-order vortex beams with topological charge value as high as?±?25. We also experimentally show the evolution of diffraction patterns when slightly changing the fractional topological charge value of vortex beam from 0.1 to 1.0. In addition, the proposed scheme shows potential large tolerance of beam alignment during the OAM states measurement of vortex beams.
机译:测量轨道角动量(OAM)涡流梁的状态在采用OAM携带的涡流束的不同应用中非常重要。我们提出了一种简单富有高效的方案来测量带环形光栅的瓦门梁的OAM状态(即拓扑电荷值)。拓扑电荷值的大小由衍射后的暗圈的数量确定,并且拓扑电荷值的符号通过衍射图案的取向而区分。我们首先使用环形幅度和相位光栅来研究衍射图案。与环形幅度光栅相比,环形相光栅显示出几乎10-DB更好的衍射效率。然后,我们通过环形相位光栅实验地证明了OAM状态测量涡流束。该方案甚至适用于高阶涡流梁,拓扑电荷值高达α≤25。我们还通过0.1至1.0略微改变涡旋光束的分数拓扑电荷值,实验显示衍射图案的演变。另外,所提出的方案在瓦马尔梁的测量期间显示出在OAM状态下的光束对准的潜在大容差。

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