29 September 2026 to 7 October 2026
Slovanka
Europe/Prague timezone

Kinetic simulations of mildly relativistic weakly magnetized shocks in AGN jets

2 Oct 2026, 11:00
1h
Slov - "Sál V. Dvořáka: hlavní sál" - A/1.NP/10 (Slovanka)

Slov - "Sál V. Dvořáka: hlavní sál" - A/1.NP/10

Slovanka

FZU - Institute of Physics of the Czech Academy of Sciences Na Slovance 1999/2, 182 00 Praha 8 Czech Republic
80
Preliminary discussion topic Presentations & discussions

Speaker

Artem Bohdan (Max Planck Institute for Plasma Physics)

Description

Plasma shock waves are among the most promising sites for efficient particle acceleration in extragalactic jets. In mildly relativistic electron–ion shocks, electrons can be heated to high Lorentz factors, providing a natural explanation for the large minimum electron energies often required to model the emission of BL Lac objects (Arbet-Engels et al. 2025). In this work, we present results from particle-in-cell (PIC) simulations of mildly relativistic weakly magnetized shocks, covering a broad range of shock Lorentz factors (γ = 1.5–16), magnetizations (σ = 10⁻⁴–0.1), and shock obliquities. We investigate ion-to-electron energy transfer, magnetic field amplification, and particle acceleration, and their dependence on upstream shock parameters. Finally, we discuss the implications of these results for multiwavelength emission modeling.

Author

Artem Bohdan (Max Planck Institute for Plasma Physics)

Presentation materials

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