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Shock compression experiments using the DiPOLE 100-X laser on the high energy density instrument at the European x-ray free electron laser: Quantitative structural analysis of liquid Sn

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  • معلومة اضافية
    • Contributors:
      Lawrence Livermore National Laboratory (LLNL); AWE Aldermaston; SUPA School of Physics and Astronomy Edinburgh; University of Edinburgh (Edin.); Laboratoire pour l'utilisation des lasers intenses (LULI); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-École polytechnique (X)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS); University of York York, UK; Helmholtz-Zentrum Dresden-Rossendorf (HZDR); Central Laser Facility (CLF); STFC Rutherford Appleton Laboratory (RAL); Science and Technology Facilities Council (STFC)-Science and Technology Facilities Council (STFC); Nanjing University (NJU); Los Alamos National Laboratory (LANL); European XFEL Gmbh; Università degli Studi di Milano-Bicocca = University of Milano-Bicocca (UNIMIB); Unité Matériaux et Transformations - UMR 8207 (UMET); Institut National de la Recherche Agronomique (INRA)-Ecole Nationale Supérieure de Chimie de Lille (ENSCL)-Institut de Chimie - CNRS Chimie (INC-CNRS)-Université de Lille-Centre National de la Recherche Scientifique (CNRS); Università degli Studi di Camerino = University of Camerino (UNICAM); Laboratory for lasers energetics - LLE (New-York, USA); University of Rochester USA; Istituto Nazionale di Ottica Firenze (INO-CNR); National Research Council of Italy; School of Mathematics and Physics Belfast; Queen's University Belfast (QUB); Centre d'Etudes Lasers Intenses et Applications (CELIA); Université de Bordeaux (UB)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Centre National de la Recherche Scientifique (CNRS); Institut Universitari de Ciencia dels Materials (ICMUV); Universitat de València (UV); Institut de minéralogie, de physique des matériaux et de cosmochimie (IMPMC); Muséum national d'Histoire naturelle (MNHN)-Institut de recherche pour le développement IRD : UR206-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS); SLAC National Accelerator Laboratory (SLAC); Stanford University; University of South Florida Tampa (USF); Atomic Weapons Establishment; Clarendon Laboratory Oxford; University of Oxford; Deutsches Elektronen-Synchrotron Hamburg (DESY); ISIS Facility; Hanyang University; Institut für Physik Rostock; Universität Rostock; Istituto Nazionale di Ottica (INO); Yonsei University; Institut des Sciences de la Terre (ISTerre); Institut de Recherche pour le Développement (IRD)-Institut national des sciences de l'Univers (INSU - CNRS)-Université Savoie Mont Blanc (USMB Université de Savoie Université de Chambéry )-Centre National de la Recherche Scientifique (CNRS)-Université Gustave Eiffel-Université Grenoble Alpes (UGA); Albert-Ludwigs-Universität Freiburg; Graduate School of Engineering Suita, Osaka; Osaka University Osaka; University of Massachusetts Amherst (UMass Amherst); University of Massachusetts System (UMASS); Paul Scherrer Institute (PSI); CEA/DAM Arpajon (CEA/DAM); Direction des Applications Militaires (DAM); Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA); Université Paris-Saclay; Carnegie Institution for Science; European Project: 101054994,HORIZON.1.1 - European Research Council (ERC),ERC-2021-ADG,HotCores(2022)
    • بيانات النشر:
      HAL CCSD
      American Institute of Physics
    • الموضوع:
      2024
    • Collection:
      HAL-CEA (Commissariat à l'énergie atomique et aux énergies alternatives)
    • نبذة مختصرة :
      International audience ; X-ray free electron laser (XFEL) sources coupled to high-power laser systems offer an avenue to study the structural dynamics of materials at extreme pressures and temperatures. The recent commissioning of the DiPOLE 100-X laser on the high energy density (HED) instrument at the European XFEL represents the state-of-the-art in combining x-ray diffraction with laser compression, allowing for compressed materials to be probed in unprecedented detail. Here, we report quantitative structural measurements of molten Sn compressed to 85(5) GPa and ∼3500 K. The capabilities of the HED instrument enable liquid density measurements with an uncertainty of ∼1% at conditions which are extremely challenging to reach via static compression methods. We discuss best practices for conducting liquid diffraction dynamic compression experiments and the necessary intensity corrections which allow for accurate quantitative analysis. We also provide a polyimide ablation pressure vs input laser energy for the DiPOLE 100-X drive laser which will serve future users of the HED instrument.
    • Relation:
      info:eu-repo/grantAgreement//101054994/EU/High Temperature Dynamics of Metals and the Earth’s Solid Inner Core/HotCores; hal-04562792; https://hal.univ-lille.fr/hal-04562792; https://hal.univ-lille.fr/hal-04562792/document; https://hal.univ-lille.fr/hal-04562792/file/JAP24-AR-00592.pdf; WOS: 001214837500001
    • الرقم المعرف:
      10.1063/5.0201702
    • Rights:
      http://creativecommons.org/licenses/by/ ; info:eu-repo/semantics/OpenAccess
    • الرقم المعرف:
      edsbas.74C78967