Non-uniform particle injection into black hole jets by radiative magnetic reconnection

Fuente: arXiv
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Auteurs principaux: Oikawa, Rin, Toma, Kenji, Kimura, Shigeo S.
Format: Preprint
Publié: 2026
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author Oikawa, Rin
Toma, Kenji
Kimura, Shigeo S.
author_facet Oikawa, Rin
Toma, Kenji
Kimura, Shigeo S.
contents Active galactic nuclei often exhibit highly collimated relativistic plasma outflows launched from the vicinity of their central black holes. One of the key theoretical challenges in understanding black hole jet formation is the origin of the plasma that feeds the jet, which remains poorly understood, particularly in explaining the observed jet emission. In this study, we focus on electron positron pair production generated by high energy photons from non axisymmetric magnetic reconnection near the black hole, as suggested by recent three dimensional general relativistic magnetohydrodynamics simulations. By employing general relativistic ray tracing, we calculate the spatial distribution of the pair production rate in the jet, taking into account photon propagation and collision angles in curved spacetime. We find that our scenario can naturally supply a sufficient amount of plasma to explain the observed radio emission from the M87 jet, even when photon anisotropy is considered. Furthermore, we show that a spinning black hole plays a crucial role in shaping the spartial dsitribution of the pairs, which in turn affects jet acceleration and very high energy emission from the jet base.
format Preprint
id arxiv_https___arxiv_org_abs_2605_01002
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Non-uniform particle injection into black hole jets by radiative magnetic reconnection
Oikawa, Rin
Toma, Kenji
Kimura, Shigeo S.
High Energy Astrophysical Phenomena
Plasma Physics
Active galactic nuclei often exhibit highly collimated relativistic plasma outflows launched from the vicinity of their central black holes. One of the key theoretical challenges in understanding black hole jet formation is the origin of the plasma that feeds the jet, which remains poorly understood, particularly in explaining the observed jet emission. In this study, we focus on electron positron pair production generated by high energy photons from non axisymmetric magnetic reconnection near the black hole, as suggested by recent three dimensional general relativistic magnetohydrodynamics simulations. By employing general relativistic ray tracing, we calculate the spatial distribution of the pair production rate in the jet, taking into account photon propagation and collision angles in curved spacetime. We find that our scenario can naturally supply a sufficient amount of plasma to explain the observed radio emission from the M87 jet, even when photon anisotropy is considered. Furthermore, we show that a spinning black hole plays a crucial role in shaping the spartial dsitribution of the pairs, which in turn affects jet acceleration and very high energy emission from the jet base.
title Non-uniform particle injection into black hole jets by radiative magnetic reconnection
topic High Energy Astrophysical Phenomena
Plasma Physics
url https://arxiv.org/abs/2605.01002