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Super-oscillatory focusing of circularly polarized light by ultra-long focal length planar lens based on binary amplitude-phase modulation

机译:基于二进制幅度相位调制的超长焦平面透镜对圆偏振光的超振荡聚焦

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In traditional optics, the focal spot size of a conventional lens is restricted to the diffraction limit 0.5λ/NA, where λ is the wavelength in vacuum and NA is the numerical aperture of the lens. Recently, various sub-diffraction focusing optical devices have been demonstrated, but they usually have short focal length and high numerical aperture. Moreover, they always suffer the problem of huge sidelobes near the focal spot and small field of view, especially when the focal spot size is less than the super-oscillation criteria 0.38λ/NA. To address the problem, here, we reported a far-field sub-diffraction point-focusing lens based on binary phase and amplitude modulation with ultra-long focal length 252.8?μm (399.5λ) and small numerical aperture 0.78, and experimentally demonstrated a super-oscillatory focusing of circularly polarized light with spot size 287?nm (0.454λ), smaller than the diffraction limit 0.64λ and the super-oscillation criterion 0.487λ. What's more, on the focal plane, in the measured area within the radius of 142λ, the largest sidelobe intensity is less than 26% of the central lobe intensity. Such ultra-long distance super-oscillatory focusing with small sidelobes and large field of view has great potential applications in far-field super-resolution microscopy, ultra-high-density optical storage and nano-fabrication.
机译:在传统光学系统中,常规透镜的焦点尺寸限制在衍射极限0.5λ/ NA,其中λ是真空中的波长,而NA是透镜的数值孔径。近来,已经证明了各种亚衍射聚焦光学器件,但是它们通常具有短焦距和高数值孔径。而且,它们总是遭受焦点附近的旁瓣大和视野小的问题,特别是当焦点尺寸小于超振动标准0.38λ/ NA时。为了解决这个问题,在这里,我们报道了一种基于二进制相位和幅度调制的远场亚衍射点聚焦透镜,具有超长焦距252.8?μm(399.5λ)和小数值孔径0.78,并通过实验证明了圆偏振光的超振荡聚焦,光斑尺寸为287?nm(0.454λ),小于衍射极限0.64λ和超振荡准则0.487λ。此外,在焦平面上,在142λ半径范围内的测量区域中,最大旁瓣强度小于中央瓣强度的26%。这种具有小旁瓣和大视野的超远距离超振荡聚焦技术在远场超分辨率显微镜,超高密度光学存储和纳米加工中具有巨大的潜在应用。

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