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Near-field optical images of subwavelength annular aperture arrays exhibiting an extraordinary transmission.

机译:亚波长环形孔径阵列的近场光学图像表现出非凡的透射率。

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In this paper, we present near-field optical images of nanostructures exhibiting an extraordinary transmission. These structures consist of annular aperture arrays engraved in a metallic film: they are quite promising structures for nanophotonics because of their high transmission directly linked to a guided mode mediated by each annular aperture. We first briefly explain our fabrication process (focused ion beam milling), then we expose the experimental setup of the near-field optical microscope working both in reflection and transmission modes. For the reflection mode, the 'coffee-bean' structure of the electromagnetic field predicted by the theory has been quite well reproduced. For the transmission mode, we present preliminary experimental results concerning the influence of the wavelength and the polarization of the incident beam on the obtained near-field images.
机译:在本文中,我们提出了表现出非凡透射率的纳米结构的近场光学图像。这些结构由刻在金属膜上的环形孔阵列组成:对于纳米光子学,它们是非常有前途的结构,因为它们的高透射率直接与每个环形孔介导的引导模式相关。我们首先简要说明我们的制造过程(聚焦离子束铣削),然后介绍在反射和透射模式下均能工作的近场光学显微镜的实验装置。对于反射模式,已经很好地再现了该理论预测的电磁场的“咖啡豆”结构。对于传输模式,我们给出了有关入射光束的波长和偏振对所获得的近场图像的影响的初步实验结果。

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