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Light diffraction by a subwavelength circular aperture

机译:亚波长圆孔的光衍射

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摘要

Diffraction of normally incident light by a subwave-length circular aperture is calculated analytically. The aperture is opened on a perfectly conducting planar screen with infinitesimal thickness. In our model, the aperture is replaced by uniform magnetic currents and charges. The model allows one to obtain the normalized cross section for the aperture radius up to half of the wavelength, which exceeds the 0.2 wavelength limit of the Bethe-Bouwkamp's dipole model [1-3]. Also, in addition to reproducing the (ka){sup}4 dependence, which is characteristic of the dipole mode, our uniform field model explains the transmission enhancement obtained in Abajo's numerical simulation [4].
机译:解析地计算出亚波长圆形孔径对法向入射光的衍射。在具有最小厚度的完美导电平面屏幕上打开光圈。在我们的模型中,孔径被均匀的磁流和电荷代替。该模型允许获得孔径最大不超过波长一半的归一化截面,该截面超出了Bethe-Bouwkamp的偶极子模型[1-3]的0.2波长极限。此外,除了重现偶极子模式的特征(ka){sup} 4之外,我们的均匀场模型还解释了Abajo数值模拟[4]中获得的传输增强。

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