English

Investigating Particle Acceleration in the Wolf-Rayet Bubble G2.4+1.4

High Energy Astrophysical Phenomena 2019-11-06 v1 Solar and Stellar Astrophysics

Abstract

The supersonic winds produced by massive stars carry a large amount of kinetic power. In numerous scenarios such winds have been proven to produce shocks in which relativistic particles are accelerated emitting non-thermal radiation. Here, we report the first detection of non-thermal emission from a single stellar bubble, G2.4+1.4, associated with a WO star. We observed this source with the uGMRT in Band 4 (550850550-850 MHz) and Band 5 (105014501050-1450 MHz). We present intensity and spectral index maps for this source that are consistent with synchrotron emission (average spectral index, α=0.83±0.10\alpha = -0.83 \pm 0.10). The fraction of the available kinetic wind power that is converted into cosmic ray acceleration is estimated to be of the order of a few per cent. This finding constitutes an observational breakthrough and gives new insight on the non-thermal physical processes taking place in the environments of isolated massive stars. In particular, our results show that non-runaway isolated massive stars are capable of accelerating relativistic particles and are therefore confirmed as sources of Galactic cosmic rays.

Keywords

Cite

@article{arxiv.1909.12332,
  title  = {Investigating Particle Acceleration in the Wolf-Rayet Bubble G2.4+1.4},
  author = {Prachi Prajapati and Anandmayee Tej and Santiago del Palacio and Paula Benaglia and Ishwara-Chandra CH and Sarita Vig and Samir Mandal and Swarna Kanti Ghosh},
  journal= {arXiv preprint arXiv:1909.12332},
  year   = {2019}
}

Comments

9 pages, 3 figures, accepted for publication in ApJL