Computing Angularly-resolved Far Field Emission Spectra in Particle-in-cell Codes using GPUs


Computing Angularly-resolved Far Field Emission Spectra in Particle-in-cell Codes using GPUs

Pausch, R.; Burau, H.; Bussmann, M.; Couperus, J. P.; Cowan, T.; Debus, A.; Huebl, A.; Irman, A.; Köhler, A.; Schramm, U.; Steiniger, K.; Widera, R.

Abstract

Angularly resolved far field radiation spectra computed from the Lienard Wiechert Potentials of accelerated electrons give information on the microscopic particle dynamics. We present recent results using our many-GPU, fully relativistic 3D3V particle-in-cell code PIConGPU for which we have developed fully synthetic radiation diagnostics that is capable of computing angularly-resolved radiation spectra of more than 10^10 electrons for several hundred to a thousand wavelengths and directions in a single simulation in less than a day on large-scale supercomputers. With such a technique it is possible to use precision spectroscopic methods for understanding the dynamics of electron acceleration in scenarios where other diagnostics fail. We present studies on laser-driven wakefield acceleration and astrophysical jet dynamics to underline the power of this new technique.

Keywords: far field radiation spectra; Lienard Wiechert potentials; PIConGPU; many-GPU; synthetic radiation diagnostics

  • Poster
    5th International Particle Accelerator Conference (IPAC 2014), 15.-20.06.2014, Dresden, Deutschland
  • Contribution to proceedings
    5th International Particle Accelerator Conference (IPAC 2014), 15.-20.06.2014, Dresden, Deutschland
    Proceedings of IPAC2014, 978-3-95450-132-8, MOPRI069

Downloads

Permalink: https://www.hzdr.de/publications/Publ-20623