Controlling the orbital angular momentum of high harmonic vortices

Few methods can produce orbital angular momentum beams in the extreme ultraviolet or X-ray, and controlling orbital angular momentum on these beams remains challenging. Here the authors apply wave mixing to a tabletop high-harmonic source and control the topological charge of extreme ultraviolet bea...

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Main Authors: Fanqi Kong, Chunmei Zhang, Frédéric Bouchard, Zhengyan Li, Graham G. Brown, Dong Hyuk Ko, T. J. Hammond, Ladan Arissian, Robert W. Boyd, Ebrahim Karimi, P. B. Corkum
Format: Article
Language:English
Published: Nature Publishing Group 2017-04-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms14970
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spelling doaj-3ab4201510bc48608d0c88198c3a1f7a2021-05-11T07:24:14ZengNature Publishing GroupNature Communications2041-17232017-04-01811610.1038/ncomms14970Controlling the orbital angular momentum of high harmonic vorticesFanqi Kong0Chunmei Zhang1Frédéric Bouchard2Zhengyan Li3Graham G. Brown4Dong Hyuk Ko5T. J. Hammond6Ladan Arissian7Robert W. Boyd8Ebrahim Karimi9P. B. Corkum10Department of Physics, University of OttawaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaJoint Attosecond Science Laboratory, University of Ottawa and National Research Council of CanadaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaDepartment of Physics, University of OttawaFew methods can produce orbital angular momentum beams in the extreme ultraviolet or X-ray, and controlling orbital angular momentum on these beams remains challenging. Here the authors apply wave mixing to a tabletop high-harmonic source and control the topological charge of extreme ultraviolet beams.https://doi.org/10.1038/ncomms14970
collection DOAJ
language English
format Article
sources DOAJ
author Fanqi Kong
Chunmei Zhang
Frédéric Bouchard
Zhengyan Li
Graham G. Brown
Dong Hyuk Ko
T. J. Hammond
Ladan Arissian
Robert W. Boyd
Ebrahim Karimi
P. B. Corkum
spellingShingle Fanqi Kong
Chunmei Zhang
Frédéric Bouchard
Zhengyan Li
Graham G. Brown
Dong Hyuk Ko
T. J. Hammond
Ladan Arissian
Robert W. Boyd
Ebrahim Karimi
P. B. Corkum
Controlling the orbital angular momentum of high harmonic vortices
Nature Communications
author_facet Fanqi Kong
Chunmei Zhang
Frédéric Bouchard
Zhengyan Li
Graham G. Brown
Dong Hyuk Ko
T. J. Hammond
Ladan Arissian
Robert W. Boyd
Ebrahim Karimi
P. B. Corkum
author_sort Fanqi Kong
title Controlling the orbital angular momentum of high harmonic vortices
title_short Controlling the orbital angular momentum of high harmonic vortices
title_full Controlling the orbital angular momentum of high harmonic vortices
title_fullStr Controlling the orbital angular momentum of high harmonic vortices
title_full_unstemmed Controlling the orbital angular momentum of high harmonic vortices
title_sort controlling the orbital angular momentum of high harmonic vortices
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2017-04-01
description Few methods can produce orbital angular momentum beams in the extreme ultraviolet or X-ray, and controlling orbital angular momentum on these beams remains challenging. Here the authors apply wave mixing to a tabletop high-harmonic source and control the topological charge of extreme ultraviolet beams.
url https://doi.org/10.1038/ncomms14970
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