Attosecond nanoscale near-field sampling

Photoemission from nanometre-scale structures offer a route toward ultrafast light-field-driven electronic nanocircuits. Here, the authors use attosecond streaking spectroscopy for nanoscale characterization of near-fields in the vicinity of tapered gold nanowires.

Bibliographic Details
Main Authors: B. Förg, J. Schötz, F. Süßmann, M. Förster, M. Krüger, B. Ahn, W. A. Okell, K. Wintersperger, S. Zherebtsov, A. Guggenmos, V. Pervak, A. Kessel, S. A. Trushin, A. M. Azzeer, M. I. Stockman, D. Kim, F. Krausz, P. Hommelhoff, M. F. Kling
Format: Article
Language:English
Published: Nature Portfolio 2016-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms11717
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author B. Förg
J. Schötz
F. Süßmann
M. Förster
M. Krüger
B. Ahn
W. A. Okell
K. Wintersperger
S. Zherebtsov
A. Guggenmos
V. Pervak
A. Kessel
S. A. Trushin
A. M. Azzeer
M. I. Stockman
D. Kim
F. Krausz
P. Hommelhoff
M. F. Kling
author_facet B. Förg
J. Schötz
F. Süßmann
M. Förster
M. Krüger
B. Ahn
W. A. Okell
K. Wintersperger
S. Zherebtsov
A. Guggenmos
V. Pervak
A. Kessel
S. A. Trushin
A. M. Azzeer
M. I. Stockman
D. Kim
F. Krausz
P. Hommelhoff
M. F. Kling
author_sort B. Förg
collection DOAJ
description Photoemission from nanometre-scale structures offer a route toward ultrafast light-field-driven electronic nanocircuits. Here, the authors use attosecond streaking spectroscopy for nanoscale characterization of near-fields in the vicinity of tapered gold nanowires.
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spelling doaj.art-683f883de2324d3f9011ef7248f220af2022-12-21T21:35:20ZengNature PortfolioNature Communications2041-17232016-05-01711710.1038/ncomms11717Attosecond nanoscale near-field samplingB. Förg0J. Schötz1F. Süßmann2M. Förster3M. Krüger4B. Ahn5W. A. Okell6K. Wintersperger7S. Zherebtsov8A. Guggenmos9V. Pervak10A. Kessel11S. A. Trushin12A. M. Azzeer13M. I. Stockman14D. Kim15F. Krausz16P. Hommelhoff17M. F. Kling18Max Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsDepartment of Physics, CASTECH, POSTECHMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsDepartment of Physics, Ludwig-Maximilians-Universität MünchenMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsAttosecond Science Laboratory, King-Saud UniversityMax Planck Institute of Quantum OpticsDepartment of Physics, CASTECH, POSTECHMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsMax Planck Institute of Quantum OpticsPhotoemission from nanometre-scale structures offer a route toward ultrafast light-field-driven electronic nanocircuits. Here, the authors use attosecond streaking spectroscopy for nanoscale characterization of near-fields in the vicinity of tapered gold nanowires.https://doi.org/10.1038/ncomms11717
spellingShingle B. Förg
J. Schötz
F. Süßmann
M. Förster
M. Krüger
B. Ahn
W. A. Okell
K. Wintersperger
S. Zherebtsov
A. Guggenmos
V. Pervak
A. Kessel
S. A. Trushin
A. M. Azzeer
M. I. Stockman
D. Kim
F. Krausz
P. Hommelhoff
M. F. Kling
Attosecond nanoscale near-field sampling
Nature Communications
title Attosecond nanoscale near-field sampling
title_full Attosecond nanoscale near-field sampling
title_fullStr Attosecond nanoscale near-field sampling
title_full_unstemmed Attosecond nanoscale near-field sampling
title_short Attosecond nanoscale near-field sampling
title_sort attosecond nanoscale near field sampling
url https://doi.org/10.1038/ncomms11717
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