Enhancing atomic physics modeling in PIConGPU


Enhancing atomic physics modeling in PIConGPU

Garten, M.; Huebl, A.; Burau, H.; Grund, A.; Widera, R.; Zacharias, M.; Kluge, T.; Bussmann, M.

In laser-generated plasmas the free electron density is a crucial parameter for plasma dynamics. Therefore, to model its spatial and temporal evolution the adequate treatment of ionization is vital. This poster presents the work in progress on numerical field ionization methods implemented in the world's fastest 3D3V electromagnetic particle-in-cell code PIConGPU. Thus, computing a value for the systematic error via repeating simulations with varying ionization schemes is in reach. With high performance computing we can give a range of validity for predictions of pump-probe experiments with high power lasers and X-ray free electron lasers.

Keywords: laser-particle acceleration; field ionization; particle-in-cell; HPC

  • Poster
    DPG Frühjahrstagung 2017 Dresden, 22.03.2017, Dresden, Deutschland

Permalink: https://www.hzdr.de/publications/Publ-25307