首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Generation of phase singularity through diffracting a plane or Gaussian beam by a spiral phase plate
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Generation of phase singularity through diffracting a plane or Gaussian beam by a spiral phase plate

机译:通过螺旋相位板衍射平面或高斯光束来产生相位奇点

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We deduce and study an analytical expression for Fresnel diffraction of a plane wave by a spiral phase plate (SPP) that imparts an arbitrary-order phase singularity on the light field. Estimates for the optical vortex radius that depends on the singularity's integer order n (also termed topological charge, or order of the dislocation) have been derived. The near-zero vortex intensity is shown to be proportional to ρ~(2n), where ρ is the radial coordinate. Also, an analytical expression for Fresnel diffraction of the Gaussian beam by a SPP with nth-order singularity is analyzed. The far-field intensity distribution is derived. The radius of maximal intensity is shown to depend on the singularity number. The behavior of the Gaussian beam intensity after a SPP with second-order singularity (n=2) is studied in more detail. The parameters of the light beams generated numerically with the Fresnel transform and via analytical formulas are in good agreement. In addition, the light fields with first- and second-order singularities were generated by a 32-level SPP fabricated on the resist by use of the electron-beam lithography technique.
机译:我们推导并研究了通过螺旋相位板(SPP)对平面波进行菲涅耳衍射的解析表达式,该螺旋相位板在光场上赋予了任意阶的相位奇点。光学旋涡半径的估算值取决于奇异点的整数阶n(也称为拓扑电荷或位错阶数)。涡流强度接近零,与ρ〜(2n)成正比,其中ρ为径向坐标。此外,分析了具有n阶奇点的SPP对高斯光束的菲涅耳衍射的解析表达式。得出远场强度分布。最大强度的半径显示为取决于奇异数。研究了具有二阶奇异性(n = 2)的SPP之后高斯光束强度的行为。菲涅耳变换和解析公式通过数值生成的光束参数非常吻合。另外,通过使用电子束光刻技术在抗蚀剂上制造的32级SPP产生具有一阶和二阶奇异性的光场。

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