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[Dataset] A Particle-In-Cell Code Comparison for Ion Acceleration: EPOCH, LSP, and WarpX

Authors: Smith, Joseph R.; Orban, Chris; Rahman, Nashad; McHugh, Brendan; Oropeza, Ricky; Chowdhury, Enam A.;

[Dataset] A Particle-In-Cell Code Comparison for Ion Acceleration: EPOCH, LSP, and WarpX

Abstract

Here we share simulation results comparing three Particle-In-Cell (PIC) codes: - EPOCH (using the normal random seed and 20 additional runs with different seeds), - LSP (using both explicit and implicit modes labeled LSP_E and LSP_I), - WarpX Notes: - Since the previous upload, the WarpX particle energy distributions have been updated to include the virtual (py) momenta - LSP makes calculations using a virtual dimension of 1 cm while the other codes use 1 meter - See the corresponding manuscript for full problem description and context Explanation of Folders/Files: -> Energy_Diagnostics - This directory has files containing field and particle energy information for each code - Various file formats are used, see headers for information on data format - As mentioned above LSP uses a different convention for the virtual dimension size, so the outputs must be multiplied by 100 for comparison -> Particle_Spectra - This directory contains calculated energy distributions of forward going particles for the various runs. - The file number multiplied by 10 fs gives the simulation time (e.g. 30_Spectrum.dat is 300 fs) - In the files, the first column is the energy bin (MeV), the second is total ion charge (C), and third is electron charge (C) - As mentioned above LSP uses a different convention for the virtual dimension size, so the outputs must be multiplied by 100 for comparison ->Simulation_Input_Files - EPOCH and WarpX simulation input decks (input files) are included here - LSP is a commercial code. If you have access to the code and are interested in the input files, please contact us. -> EPOCH_20_Runs_Density_Map - An array of the simulation space denoting whether at least one of the 20 additional EPOCH simulations had non-zero ion density for the corresponding plot step (every 10 fs)

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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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