English

Possible detection of gamma rays from Epsilon Eridani

High Energy Astrophysical Phenomena 2019-08-06 v2

Abstract

We use the Fermi-LAT gamma-ray observatory to search for gamma-ray emission from four nearby, debris disk-hosting main sequence stars: τ\tau Ceti, ϵ\epsilon Eridani, Fomalhaut, and Vega. For three stars (τ\tau Ceti, Fomalhaut, and Vega), we establish upper limits that are consistent with theoretical expectations. For ϵ\epsilon Eridani, we find a possible spatially coincident source with a soft energy spectrum of dN/dEE3.6dN/dE \sim E^{-3.6}. However, at this stage we are unable to rule out that this emission is due to a more extended feature in the diffuse background. In the interpretation that the emission is due to ϵ\epsilon Eridani, the >100> 100 MeV gamma-ray luminosity is 1027\sim 10^{27} erg/s 3×107\simeq 3\times 10^{-7} L_\odot, which is 1010\sim 10^{10} times the gamma-ray luminosity from the disk of the quiet Sun. We find 2σ\lesssim 2 \sigma evidence of source variability over a 7\sim 7 year timescale. In the interpretation that the gamma-ray emission from ϵ\epsilon Eridani itself, we consider two possible models: 1) cosmic-ray collisions with solid bodies in the debris disk which extends out \sim60 AU from the host star, and 2) emission from the stellar activity. For the former model, assuming a total disk mass consistent with infrared measurements, we find that the size distribution of bodies is steeper than expected for a collisional cascade state. If confirmed as being associated with ϵ\epsilon Eridani, this would be the first indication of gamma-ray emission from the vicinity of a main sequence star other than the Sun.

Keywords

Cite

@article{arxiv.1810.04194,
  title  = {Possible detection of gamma rays from Epsilon Eridani},
  author = {Alexander H. Riley and Louis E. Strigari and Troy A. Porter and Roger D. Blandford and Simona Murgia and Matthew Kerr and Guðlaugur Jóhannesson},
  journal= {arXiv preprint arXiv:1810.04194},
  year   = {2019}
}

Comments

13 pages, 6 figures. Key results are summarized in Table 2 and Figure 5. Accepted to ApJ