English

Relativistic ions with power-law spectra explain radio phoenixes

High Energy Astrophysical Phenomena 2026-04-24 v1

Abstract

Radio phoenixes are filamentary sources in the intracluster medium (ICM) of galaxy clusters, often extending over >100>100 kpc, arising from fossil radio lobes. Their soft, curved spectrum is widely attributed to aged relativistic electrons recently accelerated or compressed, but at high frequencies is shown to approach a power-law. Moreover, the full, curved spectrum is naturally reproduced by secondary e±e^{\pm} from a pure power-law spectrum of relativistic ions, radiating in highly-magnetized filaments; this model provides a better fit to all phoenixes, with only three free parameters. Weaker magnetization shifts the curvature to low frequencies, explaining pure power-law phoenixes. Hadronic high-curvature phoenixes require e±e^{\pm} heating, by a factor 15\gtrsim 15 if at ICM pressure. The \simkeV Compton- and \simGeV π0\pi^0-decay-peaked counterparts of hadronic phoenixes may be detectable as non-thermal X-rays and γ\gamma-rays.

Keywords

Cite

@article{arxiv.2503.07714,
  title  = {Relativistic ions with power-law spectra explain radio phoenixes},
  author = {Uri Keshet},
  journal= {arXiv preprint arXiv:2503.07714},
  year   = {2026}
}

Comments

5 pages, 3 figures