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Midinfrared Surface Plasmons in Carbon Nanotube Plasmonic Metasurface

Title: Midinfrared Surface Plasmons in Carbon Nanotube Plasmonic Metasurface
Authors: Afinogenov, Boris I.; Kopylova, Daria S.; Abrashitova, Ksenia A.; Bessonov, Vladimir O.; Anisimov, Anton S.; Dyakov, Sergey A.; Gippius, Nikolay A.; Gladush, Yuri G.; Fedyanin, Andrey A.; Nasibulin, Albert G.
Contributors: Department of Applied Physics; Skolkovo Institute of Science and Technology; Lomonosov Moscow State University; Canatu Oy; Aalto-yliopisto; Aalto University
Publisher Information: American Physical Society
Publication Year: 2018
Collection: Aalto University Publication Archive (Aaltodoc) / Aalto-yliopiston julkaisuarkistoa
Description: We report an experimental observation of the midinfrared surface plasmon excited in a carbon nanotube plasmonic metasurface. The absorption of a 400-nm-thick single-walled carbon nanotube film perforated with laser-drilled subwavelength holes arranged in a 2D lattice is resonantly enhanced by 75% as compared with the unstructured film. The enhancement of absorption has a resonant behavior associated with the excitation of the surface plasmon and occurs at the wavelengths around 15 μm for the lattice period of 10 μm. The spectral position and the magnitude of the resonance are controlled entirely by the structure geometry and can be tuned in a broad range. We demonstrate that periodic patterning can be applied to tailor the bolometric performance of carbon nanotube thin films. Namely, the voltage response of the metasurface is enhanced by 100% at the wavelength of the plasmon resonance as compared with the unstructured film. We discuss mechanisms of the enhancement and compare experimental results with the finite-difference time-domain and scattering-matrix method simulations. ; Peer reviewed
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: Physical Review Applied; Volume 9, issue 2, pp. 1-9; PURE FILEURL: https://research.aalto.fi/files/26759570/PhysRevApplied.9.024027.pdf; https://aaltodoc.aalto.fi/handle/123456789/32712
DOI: 10.1103/PhysRevApplied.9.024027
Availability: https://aaltodoc.aalto.fi/handle/123456789/32712; https://doi.org/10.1103/PhysRevApplied.9.024027
Rights: openAccess
Accession Number: edsbas.E8F38B9E
Database: BASE