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Simple and rigorous analytical expression of the propagating field behind an axicon illuminated by an azimuthally polarized beam

机译:简单而严格的解析表达式,表示由方位角偏振光束照射的轴锥后方的传播场

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摘要

A simple and rigorous analytical expression of the propagating field behind an axicon illuminated by an azimuthally polarized beam has been deduced by use of the vector interference theory. This analytical expression can easily be used to calculate accurately the propagation field distribution of azimuthally polarized beams throughout the whole space behind an axicon with any size base angle, not just restricted inside the geometric focal region as does the Fresnel diffraction integral. The numerical results show that the pattern of the beam produced by the azimuthally polarized Gaussian beam that passes through an axicon is a multiring, almost-equal-intensity, and propagation-invariant interference beam in the geometric focal region. The number of bright rings increases with the propagation distance, reaching its maximum at half of the geometric focal length and then decreasing. The intensity of bright rings gradually decreases with the propagation distance in the geometric focal region. However, in the far-field (noninterference) region, only one single-ring pattern is produced and the dark spot size expands rapidly with propagation distance.
机译:通过使用矢量干涉理论,已经推导出了由方位角偏振光束照射的轴锥后方传播场的简单而严格的解析表达式。该解析表达式可以轻松地用于精确计算在任意大小底角的轴锥后方整个空间内方位偏振光束的传播场分布,而不仅仅是像菲涅耳衍射积分那样限制在几何焦点区域内。数值结果表明,通过轴锥偏振的高斯偏振光束产生的光束在几何聚焦区域中是多环,几乎相等强度且传播不变的干涉光束。明亮环的数量随传播距离而增加,在几何焦距的一半处达到最大值,然后下降。亮环的强度随着几何焦点区域中的传播距离逐渐减小。但是,在远场(无干扰)区域中,仅产生一个单环图案,并且暗点大小随传播距离而迅速扩大。

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