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Generation of Laguerre-Gaussian LG_(p0) beams using binary phase diffractive optical elements

机译:使用二元相位衍射光学元件生成Laguerre-Gaussian LG_(p0)光束

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摘要

In recent years, considerable attention has been devoted to laser beams with specific intensity profile, i.e., non-Gaussian. In this work, we present a novel technique to generate high-radial-order Laguerre-Gaussian beams LG_(p0) based on the use of a binary phase diffractive optical element (BPDOE). The latter is a phase plate made up of annular zones introducing alternatively a phase shift equal to 0 or π modeled on positions which do not coincide with the position of the zeros of the desired LG_(p0) beam. The LG_(p0) beams are obtained by transforming a fundamental Gaussian beam through an appropriate BPDOE. The design of the latter is based on the calculation of the Fresnel-Kirchhoff integral, and the diffracted intensity at the focus plane of a lens has been modeled analytically for the first time. The numerical simulations and experiment demonstrate a good beam quality transformation. Obtained LG_(p0) are suitable for atom trap and pumping solid state laser applications.
机译:近年来,对具有特定强度分布,即非高斯分布的激光束已给予了相当大的关注。在这项工作中,我们提出了一种基于使用二进制相位衍射光学元件(BPDOE)来生成高径向阶Laguerre-Gaussian光束LG_(p0)的新颖技术。后者是由环形区域组成的相位板,可替代地引入相等于等于期望的LG_(p0)光束的零点位置的位置建模的0或π的相移。 LG_(p0)光束是通过通过适当的BPDOE变换基本高斯光束而获得的。后者的设计基于Fresnel-Kirchhoff积分的计算,并且首次对透镜焦平面处的衍射强度进行了解析建模。数值模拟和实验证明了良好的光束质量转换。获得的LG_(p0)适用于原子阱和泵浦固态激光器应用。

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