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Three-dimensional Dammann array

机译:三维达曼阵列

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We demonstrate a scheme that can produce a three-dimensional (3D) focus spot array in a 3D lattice structure, called a 3D Dammann array, in focal region of an objective. This 3D Dammann array is generated by using two separate micro-optical elements, a Dammann zone plate (DZP) that produces a series of coaxial focus spots and a conventional two-dimensional (2D) Dammann grating (DG). A simple, fast, and clear method is presented to design this binary pure-phase (0, pi) DZP in vectorial Debye theory regime. Based on this kind of DZP, one can always obtain a 3D Dammann array both for low and high numerical aperture (NA) focusing objectives. For experimental demonstration, an arrangement combining a DZP, a 2D DG, and a pair of opposing lenses is proposed to generate a 5 X 5 X 5 Dammann array in focal region of an objective with NA velence 0.127 and another 6 X 6 X 7 Dammann array for an objective of NA velence 0.66. It is shown that this arrangement makes it possible to achieve 3D Dammann arrays with micrometer-sized focus spots and focus spacings of tens of micrometers for various practical applications, such as 3D parallel micro- and nanomachining, 3D simultaneous optical manipulation, 3D optical data storage, and multifocal fluorescence microscope, etc.
机译:我们演示了一种方案,该方案可以在物镜的焦点区域中以称为3D达曼阵列的3D晶格结构生成三维(3D)焦点阵列。该3D Dammann阵列是通过使用两个单独的微光学元件,产生一系列同轴焦点的Dammann防波板(DZP)和常规的二维(2D)Dammann光栅(DG)生成的。提出了一种简单,快速,清晰的方法来设计矢量德拜理论体系中的二元纯相(0,pi)DZP。基于这种DZP,始终可以为低数值孔径(NA)聚焦物镜获得3D Dammann阵列。为了进行实验演示,提出了一种将DZP,2D DG和一对相对透镜组合在一起的布置,以在物镜焦距为NA velence 0.127和另一个6 X 6 X 7 Dammann的焦点区域生成5 X 5 X 5 Dammann阵列。 NA velence为0.66的目标的数组。结果表明,这种布置可以实现具有微米级焦点和数十微米焦点间距的3D Dammann阵列,以用于各种实际应用,例如3D并行微加工和纳米加工,3D同时光学操作,3D光学数据存储,多焦点荧光显微镜等

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