Megahertz-rate ultrafast X-ray scattering and holographic imaging at the European XFEL

Author:

Zhou Hagström NannaORCID,Schneider Michael,Kerber Nico,Yaroslavtsev Alexander,Burgos Parra Erick,Beg MarijanORCID,Lang MartinORCID,Günther Christian M.,Seng BorisORCID,Kammerbauer Fabian,Popescu Horia,Pancaldi MatteoORCID,Neeraj Kumar,Polley Debanjan,Jangid Rahul,Hrkac Stjepan B.,Patel Sheena K. K.,Ovcharenko SergeiORCID,Turenne DiegoORCID,Ksenzov Dmitriy,Boeglin ChristineORCID,Baidakova MarinaORCID,von Korff Schmising ClemensORCID,Borchert Martin,Vodungbo BorisORCID,Chen Kai,Luo ChenORCID,Radu FlorinORCID,Müller Leonard,Martínez Flórez Miriam,Philippi-Kobs AndréORCID,Riepp MatthiasORCID,Roseker WojciechORCID,Grübel Gerhard,Carley Robert,Schlappa Justine,Van Kuiken Benjamin E.,Gort RafaelORCID,Mercadier LaurentORCID,Agarwal Naman,Le Guyader Loïc,Mercurio GiuseppeORCID,Teichmann Martin,Delitz Jan Torben,Reich Alexander,Broers Carsten,Hickin David,Deiter CarstenORCID,Moore James,Rompotis DimitriosORCID,Wang Jinxiong,Kane Daniel,Venkatesan Sandhya,Meier Joachim,Pallas Florent,Jezynski TomaszORCID,Lederer Maximilian,Boukhelef Djelloul,Szuba Janusz,Wrona Krzysztof,Hauf Steffen,Zhu Jun,Bergemann Martin,Kamil Ebad,Kluyver ThomasORCID,Rosca Robert,Spirzewski MichałORCID,Kuster MarkusORCID,Turcato Monica,Lomidze David,Samartsev Andrey,Engelke Jan,Porro MatteoORCID,Maffessanti Stefano,Hansen KarstenORCID,Erdinger Florian,Fischer PeterORCID,Fiorini CarloORCID,Castoldi AndreaORCID,Manghisoni Massimo,Wunderer Cornelia Beatrix,Fullerton Eric E.,Shpyrko Oleg G.,Gutt ChristianORCID,Sanchez-Hanke CeciliaORCID,Dürr Hermann A.,Iacocca Ezio,Nembach Hans T.,Keller Mark W.,Shaw Justin M.,Silva Thomas J.,Kukreja Roopali,Fangohr Hans,Eisebitt StefanORCID,Kläui Mathias,Jaouen NicolasORCID,Scherz Andreas,Bonetti StefanoORCID,Jal EmmanuelleORCID

Abstract

The advent of X-ray free-electron lasers (XFELs) has revolutionized fundamental science, from atomic to condensed matter physics, from chemistry to biology, giving researchers access to X-rays with unprecedented brightness, coherence and pulse duration. All XFEL facilities built until recently provided X-ray pulses at a relatively low repetition rate, with limited data statistics. Here, results from the first megahertz-repetition-rate X-ray scattering experiments at the Spectroscopy and Coherent Scattering (SCS) instrument of the European XFEL are presented. The experimental capabilities that the SCS instrument offers, resulting from the operation at megahertz repetition rates and the availability of the novel DSSC 2D imaging detector, are illustrated. Time-resolved magnetic X-ray scattering and holographic imaging experiments in solid state samples were chosen as representative, providing an ideal test-bed for operation at megahertz rates. Our results are relevant and applicable to any other non-destructive XFEL experiments in the soft X-ray range.

Funder

Centre National de la Recherche Scientifique

Carl Trygger Foundation

Deutsche Forschungsgemeinschaft

Air Force Office of Scientific Research

Ministry of Science and Higher Education of the Russian Federation

European Research Council, FP7 Ideas: European Research Council

Publisher

International Union of Crystallography (IUCr)

Subject

Instrumentation,Nuclear and High Energy Physics,Radiation

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