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Design and studies on gradient index metasurfaces for broadband polarization-independent, subwavelength, and dichroic focusing

机译:宽带极化无关,亚波长和二向色聚焦的梯度指数元坯料的设计与研究

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摘要

This paper presents designs for and simulation studies on planar gradient index metasurfaces for polarization-independent and dichroic subwavelength focusing for broadband applications. Polarization-independent lenses are designed based on dielectric (Si3N4 and TiO2) gradient nanopillars. Dichroic metalenses are designed based on gradient aluminum nanohelices for helicity-dependent focusing of circularly polarized light. The helical shape is considered due to its sensitivity to circularly polarized light of a specific handedness depending upon the orientation of the helices in the lattice; this may help in 3D imaging. In the designed metalenses, the variation in the spatial dimension (fill factor) is in a gradient manner, which leads to directional bending of electromagnetic waves, and strong coupling between the bent electromagnetic waves leads to subwavelength focusing over the high numerical aperture. The designed metasurface can be materialized through multibeam interference using a combination of n plane beams and a nondiffracting Bessel beam of either zeroth or first order presented through the simulated irradiance profile and a proposed single-step experimental setup. The designed TiO2-based metalens focuses the incident arbitrary or plane polarized light to a spot sized 0.314 lambda, at a wavelength of 635 nm, that is based on Si3N4, enabling polarization-independent subwavelength focusing over a broad (436-810 nm) wavelength range. Realization of these lenses will enable polarization-independent high-numerical-aperture focusing and super-resolution real-time imaging of biological samples. (C) 2019 Optical Society of America
机译:本文介绍了平面梯度指数元件的设计和仿真研究,用于宽带应用的偏振无关和二向色亚波长的偏振和二向色子波长。基于电介质(Si3N4和TiO2)梯度纳米粒子设计偏振偏光镜。基于梯度铝纳米的二向色金属纤维设计,用于循环偏振光的螺旋依赖性聚焦。由于其对特定手性的圆偏振光的敏感性而认为取决于晶格中的螺旋的方向,因此考虑螺旋形状;这可能有助于3D成像。在设计的金属纤维中,空间尺寸(填充因子)的变化呈梯度方式,这导致电磁波的方向弯曲,并且弯曲电磁波之间的强耦合导致亚波长聚焦在高数值孔上方的亚波长。通过使用N平面梁的组合和通过模拟辐照曲线曲线曲线和所提出的单步实验设置,通过使用n平面梁的组合和ZEROTH或第一顺序的NONDIFFFRATING BESSEL光束和所提出的单步实验设置,可以通过多射线干扰来实现设计的元孔。设计的TiO2基金属将入射的任意或平面偏振光聚焦到光斑大小的0.314λ,其波长为635nm,其基于Si3n4,使得偏振无关的子波长聚焦在宽(436-810nm)波长上范围。实现这些透镜将使偏振无关的高值孔径聚焦和生物样品的超分辨率实时成像。 (c)2019年光学学会

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  • 来源
    《Applied optics》 |2019年第18期|共8页
  • 作者单位

    Yonsei Univ Sch Mech Engn 50 Yonsei Ro Seoul 120749 South Korea;

    Yonsei Univ Sch Mech Engn 50 Yonsei Ro Seoul 120749 South Korea;

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  • 正文语种 eng
  • 中图分类 应用;
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