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  • Maximal Anderson Localization and Suppression of Surface Plasmons in Two-Dimensional Random Au Networks
  • Maximal Anderson Localization and Suppression of Surface Plasmons in Two-Dimensional Random Au Networks
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  •   Home
  • Technische Universität Dresden
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  • Bereich Mathematik und Naturwissenschaften
  • Fachrichtung Physik
  • Institut Festkörper- und Materialphysik
  • Maximal Anderson Localization and Suppression of Surface Plasmons in Two-Dimensional Random Au Networks
  • Maximal Anderson Localization and Suppression of Surface Plasmons in Two-Dimensional Random Au Networks
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Supplemental material to "Maximal Anderson Localization and Suppression of Surface Plasmons in Two-Dimensional Random Au Networks"Open Access Icon

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Date
2023
Author
Lubk, Axel
Schultz, Johannes
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Abstract
Two-dimensional random metal networks possess unique electrical and optical properties, such as almost total optical transparency and low sheet resistance, which are closely related to their disordered structure. Here we present a detailed experimental and theoretical investigation of their plasmonic properties, revealing Anderson (disorder-driven) localized surface plasmon (LSP) resonances of very large quality factors and spatial localization close to the theoretical maximum, which couple to electromagnetic waves. Moreover, they disappear above a geometry-dependent threshold at ca. 1.6 eV in the investigated Au networks, explaining their large transparencies in the optical spectrum.
URI
https://opara.zih.tu-dresden.de/xmlui/handle/123456789/5814
http://dx.doi.org/10.25532/OPARA-203
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  • Maximal Anderson Localization and Suppression of Surface Plasmons in Two-Dimensional Random Au Networks [1]Open Access Icon

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