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首页> 外文期刊>Photonics Journal, IEEE >Generation of an Ultra-Long Optical Needle Induced by an Azimuthally Polarized Beam
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Generation of an Ultra-Long Optical Needle Induced by an Azimuthally Polarized Beam

机译:产生由方位角偏振梁引起的超长光针

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In this manuscript, a method of generating an ultra-long optical needle (depth-to-width ratio 37.5:1) is proposed and demonstrated by focusing an azimuthally polarized beam. In theory, the action mechanism between the incident beam and the amplitude modulation element, the spiral phase modulation element, the focusing lens were studied based on the Richards and Wolf's theory. The relationship between the intensity distribution of the optical needle and the structure parameter of the element were obtained, thus leading to the complete design model and design standard. In experiment, the annular amplitude modulation element and spiral phase modulation element were fabricated by lithography. The optical needle was obtained based on a custom-designed optical setup in our laboratory. The optical system consists of an annular aperture (3.9-mm inner diameter, 80-µm annular width), a spiral phase plate (topological charge of 1), and an objective lens with numerical aperture of 0.95. Finally, an optical needle with a subwavelength size (0.416λ) and an ultra-long depth of focus (15.6λ) was obtained, showing an excellent agreement with our theoretical model.
机译:在该稿件中,提出了一种产生超长光针(深度到宽度比37.5:1)的方法,并通过聚焦方位而视偏振梁来说明。理论上,基于理查兹和狼的理论研究了入射光光束和振幅调制元件之间的动作机制,螺旋相调制元件,聚焦镜片。获得了光针的强度分布与元件结构参数之间的关系,从而导致完整的设计模型和设计标准。在实验中,通过光刻制造环形幅度调制元件和螺旋相调制元件。基于我们实验室中的定制设计光学设置获得光针。光学系统由环形孔(3.9mm内径,80μm环形宽),螺旋相板(拓扑电荷为1),以及具有0.95的数值孔径的物镜。最后,获得了具有亚波长大小(0.416λ)和超长焦深度(15.6λ)的光学针,与我们的理论模型表示了很好的一致性。

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