In3SbTe2 as a programmable nanophotonics material platform for the infrared

Here, the authors introduce In3SbTe2 (IST) as a programmable material platform for plasmonics and nanophotonics in the infrared. They demonstrate direct optical writing, modifying and erasing of metallic crystalline IST nanoantennas, tuning their resonances, as well as nanoscale screening and solder...

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Autores principales: Andreas Heßler, Sophia Wahl, Till Leuteritz, Antonios Antonopoulos, Christina Stergianou, Carl-Friedrich Schön, Lukas Naumann, Niklas Eicker, Martin Lewin, Tobias W. W. Maß, Matthias Wuttig, Stefan Linden, Thomas Taubner
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/211696637f694dc5a8ed127d001f6bdf
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spelling oai:doaj.org-article:211696637f694dc5a8ed127d001f6bdf2021-12-02T14:26:59ZIn3SbTe2 as a programmable nanophotonics material platform for the infrared10.1038/s41467-021-21175-72041-1723https://doaj.org/article/211696637f694dc5a8ed127d001f6bdf2021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21175-7https://doaj.org/toc/2041-1723Here, the authors introduce In3SbTe2 (IST) as a programmable material platform for plasmonics and nanophotonics in the infrared. They demonstrate direct optical writing, modifying and erasing of metallic crystalline IST nanoantennas, tuning their resonances, as well as nanoscale screening and soldering.Andreas HeßlerSophia WahlTill LeuteritzAntonios AntonopoulosChristina StergianouCarl-Friedrich SchönLukas NaumannNiklas EickerMartin LewinTobias W. W. MaßMatthias WuttigStefan LindenThomas TaubnerNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Andreas Heßler
Sophia Wahl
Till Leuteritz
Antonios Antonopoulos
Christina Stergianou
Carl-Friedrich Schön
Lukas Naumann
Niklas Eicker
Martin Lewin
Tobias W. W. Maß
Matthias Wuttig
Stefan Linden
Thomas Taubner
In3SbTe2 as a programmable nanophotonics material platform for the infrared
description Here, the authors introduce In3SbTe2 (IST) as a programmable material platform for plasmonics and nanophotonics in the infrared. They demonstrate direct optical writing, modifying and erasing of metallic crystalline IST nanoantennas, tuning their resonances, as well as nanoscale screening and soldering.
format article
author Andreas Heßler
Sophia Wahl
Till Leuteritz
Antonios Antonopoulos
Christina Stergianou
Carl-Friedrich Schön
Lukas Naumann
Niklas Eicker
Martin Lewin
Tobias W. W. Maß
Matthias Wuttig
Stefan Linden
Thomas Taubner
author_facet Andreas Heßler
Sophia Wahl
Till Leuteritz
Antonios Antonopoulos
Christina Stergianou
Carl-Friedrich Schön
Lukas Naumann
Niklas Eicker
Martin Lewin
Tobias W. W. Maß
Matthias Wuttig
Stefan Linden
Thomas Taubner
author_sort Andreas Heßler
title In3SbTe2 as a programmable nanophotonics material platform for the infrared
title_short In3SbTe2 as a programmable nanophotonics material platform for the infrared
title_full In3SbTe2 as a programmable nanophotonics material platform for the infrared
title_fullStr In3SbTe2 as a programmable nanophotonics material platform for the infrared
title_full_unstemmed In3SbTe2 as a programmable nanophotonics material platform for the infrared
title_sort in3sbte2 as a programmable nanophotonics material platform for the infrared
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/211696637f694dc5a8ed127d001f6bdf
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