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Design of discrete and continuous super-resolving Toraldo pupils in the microwave range

机译:微波炉区中离散和连续超声瞳孔的设计

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摘要

The concept of super-resolution refers to various methods for improving the angular resolution of an optical imaging system beyond the classical diffraction limit. In optical microscopy, several techniques have been successfully developed with the aim of narrowing the central lobe of the illumination point spread function. In astronomy, however, no similar techniques can be used. A feasible method to design antennas and telescopes with angular resolution better than the diffraction limit consists of using variable transmittance pupils. In particular, discrete binary phase masks (0 or pi) with finite phase-jump positions, known as Toraldo pupils (TPs), have the advantage of being easy to fabricate but offer relatively little flexibility in terms of achieving specific trade-offs between design parameters, such as the angular width of the main lobe and the intensity of sidelobes. In this paper, we show that a complex transmittance filter (equivalent to a continuous TP, i.e., consisting of infinitely narrow concentric rings) can achieve more easily the desired trade-off between design parameters. We also show how the super-resolution effect can be generated with both amplitude-and phase-only masks and confirm the expected performance with electromagnetic numerical simulations in the microwave range. (c) 2018 Optical Society of America
机译:超分辨率的概念是指用于改善超出古典衍射极限的光学成像系统的角度分辨的各种方法。在光学显微镜中,已经成功开发了几种技术,其目的是缩小照明点传播功能的中心叶。然而,在天文学中,没有使用类似的技术。一种可行的方法来设计具有比衍射极限的角度分辨率的有角度分辨率的望远镜的方法包括使用可变透射率瞳孔。特别地,具有有限相位跳转位置的离散二进制相位掩模(0或PI),称为Toraldo瞳孔(TPS),具有易于制造的优点,但在实现设计之间的特定权衡方面提供相对较少的灵活性参数,例如主叶的角度宽度和侧瓣的强度。在本文中,我们表明复杂的透射率滤波器(相当于连续TP,即由无限窄的同心环组成)可以更容易地实现设计参数之间所需的折衷。我们还展示了如何使用幅度和相位掩模来生成超分辨率效果,并在微波范围内使用电磁数值模拟确认预期性能。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第9期|共8页
  • 作者单位

    Osserv Astrofis Arcetri Ist Nazl Astrofis INAF Largo E Fermi 5 I-50125 Florence Italy;

    Osserv Astrofis Arcetri Ist Nazl Astrofis INAF Largo E Fermi 5 I-50125 Florence Italy;

    CNR Ist Fis Applicata Nello Carrara Via Madonna del Piano 10 I-50019 Florence Italy;

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