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    Por favor, use este identificador para citar o enlazar este ítem:https://uvadoc.uva.es/handle/10324/83870

    Título
    XFEL imaging techniques for high energy density and inertial fusion energy research at HED-HiBEF
    Autor
    Laso Garcia, Alejandro
    Mishchenko, Mikhail
    Bouffetier, Victorien
    Appel, Karen
    Arefiev, Alexey
    Baehtz, Carsten
    Brambrink, Erik
    Cernaianu, Mihail O
    Doria, Domenico
    Dornheim, Tobias
    Dyer, Gillis M
    Fefeu, Nicolas
    Galtier, Eric
    Gawne, Thomas
    Ghenuche, Petru
    Goede, Sebastian
    Hagemann, Johannes
    Herbert, Marie-Luise
    Höppner, Hauke
    Huang, Lingen
    Humphries, Oliver S
    Jones, Mae
    Khaghani, Dimitri
    Kluge, Thomas
    Koliyadu, Jayanath
    Kraus, Dominik
    Ja Lee, Hae
    Lütgert, Julian
    Makita, Mikako
    Naedler, Jean-Paul
    Nagler, Bob
    Nakatsutsumi, Motoaki
    Nguyen, Quynh L
    Pelka, Alexander
    Preston, Thomas R
    Bing Qu, Chong
    Rahul, Sripati V
    Randolph, Lisa
    Redmer, Ronald
    Rehwald, Martin
    Rinderknecht, Hans G
    Rodriguez-Fernandez, Angel
    Santos, Joao J
    Schramm, Ulrich
    Smid, Michal
    Strohm, Cornelius
    Strucka, Jergus
    Tang, Minxue
    Vagovic, Patrik
    Vescovi, Milenko
    Yang, Long
    Zeil, Karl
    Zastrau, Ulf
    Cowan, Thomas E
    Toncian, Toma
    Pérez Callejo, GabrielAutoridad UVA Orcid
    Año del Documento
    2026
    Editorial
    Institute of Physics
    Descripción
    Producción Científica
    Documento Fuente
    Plasma Physics and Controlled Fusion, Marzo 2026, vol. 68, 035027
    Zusammenfassung
    The imaging platform developed at the High Energy Density-Helmholtz International Beamline for Extreme Fields (HED-HiBEF) instrument at the European X-ray Free Electron Laser (XFEL) and its applications to HED and fusion related research are presented. The platform combines the XFEL beam with the high-intensity short-pulse laser ReLaX and the high-energy nanosecond-pulse laser DiPOLE-100X. The spatial resolution is better than 500 nm and the temporal resolution of the order of 50 fs. The influence of the XFEL source in the x-ray imaging method is discussed. Free-propagation x-ray phase contrast imaging and Talbot-Lau imaging setups are shown. We show examples of blast waves and converging cylindrical shocks in aluminum, resonant absorption measurements of specific charged states in copper with ReLaX and planar shocks in polystyrene material generated by DiPOLE-100X. For the first time, we show the application of Talbot-Lau interferometry to convergent cylindrical shocks as well as resonant absorption processes. We also discuss the possibilities introduced by combining this imaging platform with a kJ-class laser.
    ISSN
    0741-3335
    Revisión por pares
    SI
    DOI
    10.1088/1361-6587/ae5340
    Patrocinador
    The work of G. P.-C. has been supported by Research Grant No. PID2022-13 7632OB-I00 from the Spanish Ministry of Science and Innovation.
    Idioma
    spa
    URI
    https://uvadoc.uva.es/handle/10324/83870
    Tipo de versión
    info:eu-repo/semantics/acceptedVersion
    Derechos
    openAccess
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    • DEP33 - Artículos de revista [260]
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    Universidad de Valladolid

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