Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source

Diffraction imaging studies of free individual nanoparticles have so far been restricted to XUV and X-ray free - electron laser facilities. Here the authors demonstrate the possibility of using table-top XUV laser sources to image prolate shapes of superfluid helium droplets.

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Autores principales: Daniela Rupp, Nils Monserud, Bruno Langbehn, Mario Sauppe, Julian Zimmermann, Yevheniy Ovcharenko, Thomas Möller, Fabio Frassetto, Luca Poletto, Andrea Trabattoni, Francesca Calegari, Mauro Nisoli, Katharina Sander, Christian Peltz, Marc J. Vrakking, Thomas Fennel, Arnaud Rouzée
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/f3659bf4e098416b9a07c699fbf7dbb7
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spelling oai:doaj.org-article:f3659bf4e098416b9a07c699fbf7dbb72021-12-02T15:38:41ZCoherent diffractive imaging of single helium nanodroplets with a high harmonic generation source10.1038/s41467-017-00287-z2041-1723https://doaj.org/article/f3659bf4e098416b9a07c699fbf7dbb72017-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00287-zhttps://doaj.org/toc/2041-1723Diffraction imaging studies of free individual nanoparticles have so far been restricted to XUV and X-ray free - electron laser facilities. Here the authors demonstrate the possibility of using table-top XUV laser sources to image prolate shapes of superfluid helium droplets.Daniela RuppNils MonserudBruno LangbehnMario SauppeJulian ZimmermannYevheniy OvcharenkoThomas MöllerFabio FrassettoLuca PolettoAndrea TrabattoniFrancesca CalegariMauro NisoliKatharina SanderChristian PeltzMarc J. VrakkingThomas FennelArnaud RouzéeNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Daniela Rupp
Nils Monserud
Bruno Langbehn
Mario Sauppe
Julian Zimmermann
Yevheniy Ovcharenko
Thomas Möller
Fabio Frassetto
Luca Poletto
Andrea Trabattoni
Francesca Calegari
Mauro Nisoli
Katharina Sander
Christian Peltz
Marc J. Vrakking
Thomas Fennel
Arnaud Rouzée
Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
description Diffraction imaging studies of free individual nanoparticles have so far been restricted to XUV and X-ray free - electron laser facilities. Here the authors demonstrate the possibility of using table-top XUV laser sources to image prolate shapes of superfluid helium droplets.
format article
author Daniela Rupp
Nils Monserud
Bruno Langbehn
Mario Sauppe
Julian Zimmermann
Yevheniy Ovcharenko
Thomas Möller
Fabio Frassetto
Luca Poletto
Andrea Trabattoni
Francesca Calegari
Mauro Nisoli
Katharina Sander
Christian Peltz
Marc J. Vrakking
Thomas Fennel
Arnaud Rouzée
author_facet Daniela Rupp
Nils Monserud
Bruno Langbehn
Mario Sauppe
Julian Zimmermann
Yevheniy Ovcharenko
Thomas Möller
Fabio Frassetto
Luca Poletto
Andrea Trabattoni
Francesca Calegari
Mauro Nisoli
Katharina Sander
Christian Peltz
Marc J. Vrakking
Thomas Fennel
Arnaud Rouzée
author_sort Daniela Rupp
title Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
title_short Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
title_full Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
title_fullStr Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
title_full_unstemmed Coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
title_sort coherent diffractive imaging of single helium nanodroplets with a high harmonic generation source
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/f3659bf4e098416b9a07c699fbf7dbb7
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