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Attosecond experiments on plasmonic nanostructures: principles and experiments

Johannes Schötz presents the first measurements of optical electro-magnetic near-fields around nanostructures with subcycle-resolution. The ability to measure and understand light-matter interactions on the nanoscale is an important component for the development of light-wave-electronics, the contro...

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Detalles Bibliográficos
Autor principal: Schötz, Johannes
Lenguaje:eng
Publicado: Springer 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-658-13713-7
http://cds.cern.ch/record/2151742
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author Schötz, Johannes
author_facet Schötz, Johannes
author_sort Schötz, Johannes
collection CERN
description Johannes Schötz presents the first measurements of optical electro-magnetic near-fields around nanostructures with subcycle-resolution. The ability to measure and understand light-matter interactions on the nanoscale is an important component for the development of light-wave-electronics, the control and steering of electron dynamics with the frequency of light, which promises a speed-up by several orders of magnitude compared to conventional electronics. The experiments presented here on metallic nanotips, widely used in experiments and applications, do not only demonstrate the feasibility of attosecond streaking as a unique tool for fundamental studies of ultrafast nanophotonics but also represent a first important step towards this goal. Contents Electron Scattering in Solids Attosecond Streaking from Metal Nanotips Target Groups Lecturers and students of physics, especially in the area of nanophotonics and attosecond physics About the Author Johannes Schötz received his Master's degree in physics and currently works as a PhD student in the field of ultrafast nanophotonics at the Max Planck Institute of Quantum Optics Garching.
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spelling cern-21517422021-04-21T19:42:27Zdoi:10.1007/978-3-658-13713-7http://cds.cern.ch/record/2151742engSchötz, JohannesAttosecond experiments on plasmonic nanostructures: principles and experimentsOther Fields of PhysicsJohannes Schötz presents the first measurements of optical electro-magnetic near-fields around nanostructures with subcycle-resolution. The ability to measure and understand light-matter interactions on the nanoscale is an important component for the development of light-wave-electronics, the control and steering of electron dynamics with the frequency of light, which promises a speed-up by several orders of magnitude compared to conventional electronics. The experiments presented here on metallic nanotips, widely used in experiments and applications, do not only demonstrate the feasibility of attosecond streaking as a unique tool for fundamental studies of ultrafast nanophotonics but also represent a first important step towards this goal. Contents Electron Scattering in Solids Attosecond Streaking from Metal Nanotips Target Groups Lecturers and students of physics, especially in the area of nanophotonics and attosecond physics About the Author Johannes Schötz received his Master's degree in physics and currently works as a PhD student in the field of ultrafast nanophotonics at the Max Planck Institute of Quantum Optics Garching.Springeroai:cds.cern.ch:21517422016
spellingShingle Other Fields of Physics
Schötz, Johannes
Attosecond experiments on plasmonic nanostructures: principles and experiments
title Attosecond experiments on plasmonic nanostructures: principles and experiments
title_full Attosecond experiments on plasmonic nanostructures: principles and experiments
title_fullStr Attosecond experiments on plasmonic nanostructures: principles and experiments
title_full_unstemmed Attosecond experiments on plasmonic nanostructures: principles and experiments
title_short Attosecond experiments on plasmonic nanostructures: principles and experiments
title_sort attosecond experiments on plasmonic nanostructures: principles and experiments
topic Other Fields of Physics
url https://dx.doi.org/10.1007/978-3-658-13713-7
http://cds.cern.ch/record/2151742
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