Filamentation of the electromagnetic precursor in relativistic quasi-perpendicular electron-positron shocks

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Main Authors: Sobacchi, Emanuele, Lyubarsky, Yuri, Sironi, Lorenzo, Iwamoto, Masanori
Format: Preprint
Published: 2025
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_version_ 1866915485264642048
author Sobacchi, Emanuele
Lyubarsky, Yuri
Sironi, Lorenzo
Iwamoto, Masanori
author_facet Sobacchi, Emanuele
Lyubarsky, Yuri
Sironi, Lorenzo
Iwamoto, Masanori
contents We present a scenario that could explain non-thermal particle acceleration in relativistic quasi-perpendicular electron-positron shocks, such as the termination shock of pulsar wind nebulae. The shock produces a strong electromagnetic precursor that propagates into the upstream plasma, which is initially threaded by a uniform background magnetic field. We show that the filamentation instability breaks the precursor into radiation filaments parallel to the shock normal. The transverse scale of the filaments is of the order of a few plasma skin depths. In the shock frame, the bulk Lorentz factor of the upstream plasma is significantly reduced inside the radiation filaments. Then, the instability produces a relativistic shear flow with strong velocity gradients on kinetic scales. The velocity gradients distort the background magnetic field lines, and generate a magnetic field component parallel to the shock normal that reverses across each radiation filament, a configuration that could trigger magnetic reconnection in the upstream plasma. These effects may accelerate particles before the plasma enters the shock.
format Preprint
id arxiv_https___arxiv_org_abs_2507_22561
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Filamentation of the electromagnetic precursor in relativistic quasi-perpendicular electron-positron shocks
Sobacchi, Emanuele
Lyubarsky, Yuri
Sironi, Lorenzo
Iwamoto, Masanori
High Energy Astrophysical Phenomena
Plasma Physics
We present a scenario that could explain non-thermal particle acceleration in relativistic quasi-perpendicular electron-positron shocks, such as the termination shock of pulsar wind nebulae. The shock produces a strong electromagnetic precursor that propagates into the upstream plasma, which is initially threaded by a uniform background magnetic field. We show that the filamentation instability breaks the precursor into radiation filaments parallel to the shock normal. The transverse scale of the filaments is of the order of a few plasma skin depths. In the shock frame, the bulk Lorentz factor of the upstream plasma is significantly reduced inside the radiation filaments. Then, the instability produces a relativistic shear flow with strong velocity gradients on kinetic scales. The velocity gradients distort the background magnetic field lines, and generate a magnetic field component parallel to the shock normal that reverses across each radiation filament, a configuration that could trigger magnetic reconnection in the upstream plasma. These effects may accelerate particles before the plasma enters the shock.
title Filamentation of the electromagnetic precursor in relativistic quasi-perpendicular electron-positron shocks
topic High Energy Astrophysical Phenomena
Plasma Physics
url https://arxiv.org/abs/2507.22561