English

Escape of fast radio bursts from magnetars

High Energy Astrophysical Phenomena 2024-10-23 v1 Plasma Physics

Abstract

Fast radio bursts (FRBs) are bright extragalactic transients likely produced by magnetars. We study the propagation of FRBs in magnetar winds, assuming that the wind is strongly magnetized and composed of electron-positron pairs. We focus on the regime where the strength parameter of the radio wave, a0a_0, is larger than unity, and the wave frequency, ω0\omega_0, is larger than the Larmor frequency in the background magnetic field, ωL\omega_{\rm L}. We show that strong radio waves with a0>1a_0>1 are able to propagate when ω0>a0ωL\omega_0 > a_0\omega_{\rm L}, as the plasma current is a linear function of the wave electric field. The dispersion relation is independent of the wave strength parameter when ω0>a0ωL\omega_0 > a_0\omega_{\rm L}. Instead, radio waves could be damped when ω0<a0ωL\omega_0 < a_0\omega_{\rm L}, as a significant fraction of the wave energy is used to compress the plasma and amplify the background magnetic field. Our results suggest that FRBs should be produced at large distances from the magnetar (i.e., R>1012  cmR>10^{12}{\rm\; cm}, where the condition ω0>a0ωL\omega_0 > a_0\omega_{\rm L} is satisfied). Alternatively, the structure of the magnetar wind should be strongly modified during a flare to allow the escape of FRBs produced at radii R<1012  cmR<10^{12}{\rm\; cm}.

Keywords

Cite

@article{arxiv.2409.10732,
  title  = {Escape of fast radio bursts from magnetars},
  author = {Emanuele Sobacchi and Masanori Iwamoto and Lorenzo Sironi and Tsvi Piran},
  journal= {arXiv preprint arXiv:2409.10732},
  year   = {2024}
}

Comments

accepted by A&A