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A subwavelength spot and a three-dimensional optical trap formed by a single planar element with azimuthal light

机译:由单个平面元件与方位角光形成的亚波长光斑和三维光阱

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摘要

The generation of subwavelength spots smaller than the Abbe diffraction limit has attracted great interest due to the various applications in many fields, such as high-density optical data storage and particle manipulation. Planar optics that can miniaturize conventional refractive optics have become increasingly attractive. In this work, we first formed a subwavelength bright spot and a three-dimensional optical trap under the illumination of an azimuthally polarized (AP) beam by only a single planar element, a spiral zone plate (SZP). Initially, the SZP was proposed as a computer-generated hologram to generate optical phase singularities. However, the SZP in this work was used to focus and modulate the incident AP beam with a vortex phase simultaneously. Therefore, no additional vortex phase modulating element was introduced in our method. The SZP has an ultra-long focal length of 250λ for a numerical aperture (NA) of 0.95 and an incident wavelength of 632.8 nm. The generated spot is purely transversely polarized with a lateral full width at half maximum (FWHM) of 0.43λ beyond the diffraction limit of 0.54λ. The generated focal field formed a stable optical trap for a Rayleigh dielectric particle in three dimensions.
机译:由于在许多领域中的各种应用,例如高密度光学数据存储和粒子处理,产生小于阿贝衍射极限的亚波长光斑引起了极大的兴趣。可以使常规折射光学器件小型化的平面光学器件变得越来越有吸引力。在这项工作中,我们首先在仅由一个平面元件(螺旋波带片(SZP))在方位角偏振(AP)光束的照射下形成了一个亚波长亮点和一个三维光阱。最初,将SZP提议为计算机生成的全息图,以生成光学相位奇点。然而,这项工作中的SZP被用来聚焦和调制具有涡旋相位的入射AP光束。因此,在我们的方法中没有引入额外的涡旋相位调制元件。 SZP具有250λ的超长焦距,数值孔径(NA)为0.95,入射波长为632.8 nm。产生的光斑被纯粹的横向极化,其半峰宽(FWHM)为0.43λ,超出了衍射极限0.54λ。所产生的焦点在三个维度上形成了用于瑞利电介质粒子的稳定的光阱。

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