Development of spin polarization-dependent quantum radiation reaction in Osiris QED module
POSTER
Abstract
The next generation of high-intensity laser facilities around the world will reach the multi-Petawatt power level. These high-intensity lasers will allow the exploration of the strong field quantum electrodynamics (QED) regime. Particle-in-cell (PIC) codes are a common way to simulate high-intensity laser-matter interactions. In PIC codes, such as the OSIRIS framework, QED effects were implemented through Monte-Carlo interaction processes to simulate strong-field QED-plasma experiments in the near future. Existing PIC+QED modules can capture plasma kinetic effects and calculate the quantum emission spectrum. However, they do not take into account the spin polarization, as the QED processes are implemented using unpolarized rates. Including the dependence of spin polarization to the existing QED module is important because it will not only change the QED emission rates, but also allow tracking how the electron or positron spin polarization evolves in the strong field QED experiment. Here, we present progress in developing the Osiris QED module to include the spin polarization dependence, including consideration of the spin-basis and Monte-Carlo emission processes.
Presenters
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Qian Qian
University of Michigan
Authors
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Qian Qian
University of Michigan
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Daniel Seipt
Helmholtz Institut Jena, Helmholtz Institute Jena
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Marija Vranic
GoLP/IPFN, IST, Universidade de Lisboa, GoLP/IPFN, Instituto Superior Técnico, University of Lisbon, Portugal, Instituto Superior Tecnico, Instituto Superior Técnico, IST, University of Lisbon, Portugal, GoLP/Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico, University of Lisbon, Portugal
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Thomas Grismayer
Instituto Superior Tecnico
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Alexander G Thomas
University of Michigan, University of Michigan - Ann Arbor