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Supplementary Materials ======================= Corresponding manuscript: "Laser-solid interaction studies enabled by the new capabilities of the iP2 BELLA PW beamline" by Sahel Hakimi, Lieselotte Obst-Huebl, Axel Huebl, Kei Nakamura, Stepan S. Bulanov, Sven Steinke, Wim P. Leemans, Zachary Kober, Tobias M. Ostermayr, Thomas Schenkel, Anthony J. Gonsalves, Jean-Luc Vay, Jeroen van Tilborg, Csaba Toth, Carl B. Schroeder, Eric Esarey, and Cameron G.R. Geddes (2022) Structure of this Archive ------------------------- This archive is structured as follows in sub-directories: - `WarpXsource/`: the simulation source code, build instructions/documentation and references - `WarpXDataAndInputs/`: the simulation inputs, submission scripts, and representative output - `FigureDataAndScripts/`: the analysis scripts and, where applicable, processed data for individual figures Note that raw data output of simulations is approximately 180 TByte per simulation and can thus not easily be shared in this data archive. Instead, we make all source code, documenation and build instructions, selected processed/reduced data, and relevant analysis scripts available to ensure reproducibility of the raw data basis. Please see the individual subdirectories for further `README.txt` files. Contacts -------- For general questions about the publication and data archive, please contact the corresponding authors. Please see the archive metadata and the publication manuscript for contacts.
This work was supported by the U.S. Department of Energy (DOE) Office of Science, Offices of Fusion En- ergy Science (FES) and High Energy Physics, Laser- NetUS, and used resources at NERSC under contract No. DE-AC02-05CH11231, as well as OLCF (DE-AC05- 00OR22725). S. Hakimi was supported by the U.S. DOE FES Postdoctoral Research Program administered by the Oak Ridge Institute for Science and Education (ORISE) for the DOE. ORISE is managed by Oak Ridge Asso- ciated Universities (ORAU) under Contract No. DE- SC0014664. All opinions expressed in this paper are the author's and do not necessarily reflect the policies and views of DOE, ORAU, or ORISE. WarpX was supported by the Exascale Computing Project (17-SC-20-SC), a col- laborative effort of two U.S. DOE organizations (Office of Science and the National Nuclear Security Adminis- tration).
Particle-in-Cell Simulation, Magnetic Vortex Acceleration, Ion Acceleration, Laser-Plasma Interactions
Particle-in-Cell Simulation, Magnetic Vortex Acceleration, Ion Acceleration, Laser-Plasma Interactions
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