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. 2012 Dec 20;492(7429):411-4.
doi: 10.1038/nature11669.

Quasi-cylindrical wave contribution in experiments on extraordinary optical transmission

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Quasi-cylindrical wave contribution in experiments on extraordinary optical transmission

Frerik van Beijnum et al. Nature. .

Abstract

A metal film perforated by a regular array of subwavelength holes shows unexpectedly large transmission at particular wavelengths, a phenomenon known as the extraordinary optical transmission (EOT) of metal hole arrays. EOT was first attributed to surface plasmon polaritons, stimulating a renewed interest in plasmonics and metallic surfaces with subwavelength features. Experiments soon revealed that the field diffracted at a hole or slit is not a surface plasmon polariton mode alone. Further theoretical analysis predicted that the extra contribution, from quasi-cylindrical waves, also affects EOT. Here we report the experimental demonstration of the relative importance of surface plasmon polaritons and quasi-cylindrical waves in EOT by considering hole arrays of different hole densities. From the measured transmission spectra, we determine microscopic scattering parameters which allow us to show that quasi-cylindrical waves affect EOT only for high densities, when the hole spacing is roughly one wavelength. Apart from providing a deeper understanding of EOT, the determination of microscopic scattering parameters from the measurement of macroscopic optical properties paves the way to novel design strategies.

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References

    1. Nature. 2008 Apr 10;452(7188):728-31 - PubMed
    1. Nano Lett. 2010 Dec 8;10(12):4962-9 - PubMed
    1. Opt Lett. 2011 Sep 15;36(18):3666-8 - PubMed
    1. Phys Rev Lett. 2004 Mar 12;92(10):107401 - PubMed
    1. Nature. 2003 Aug 14;424(6950):824-30 - PubMed

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