English

Steady-State Hadronic Gamma-Ray Emission from 100-Myr-Old Fermi Bubbles

High Energy Astrophysical Phenomena 2015-06-18 v3 Cosmology and Nongalactic Astrophysics Astrophysics of Galaxies

Abstract

The Fermi Bubbles are enigmatic \gamma-ray features of the Galactic bulge. Both putative activity (within \sim few ×\times Myr) connected to the Galactic center super-massive black hole and, alternatively, nuclear star formation have been claimed as the energising source of the Bubbles. Likewise, both inverse-Compton emission by non-thermal electrons (`leptonic' models) and collisions between non-thermal protons and gas (`hadronic' models) have been advanced as the process supplying the Bubbles' \gamma -ray emission. An issue for any steady state hadronic model is that the very low density of the Bubbles' plasma seems to require that they accumulate protons over a multi-Gyr timescale, much longer than other natural timescales occurring in the problem. Here we present a hadronic model where the timescale for generating the Bubbles' hadronic \gamma -ray emission is \sim few ×108\times 10^8 years. Our model invokes collapse of the Bubbles' thermally-unstable plasma, leading to an accumulation of cosmic rays and magnetic field into localised, warm (104\sim 10^4 K), and likely filamentary condensations of higher density gas. Under the condition that these filaments are supported by non-thermal pressure, we can predict the hadronic emission from the Bubbles to be Lγ2×1037L_\gamma \simeq 2 \times 10^{37} erg/s  M˙in/(0.1 MSun/\ \dot{M}_\mathrm{in}/(0.1 \ M_{Sun}/ year ) TFB2/(3.5×107K)2Mfil/Mpls) \ T_\mathrm{FB}^2/(3.5 \times 10^7 K) ^2 M_{fil}/M_{pls} ; precisely their observed luminosity (normalizing to the star-formation-driven mass flux into the Bubbles and their measured plasma temperature and adopting the further result that the mass in the filaments, MfilM_{fil} is approximately equal to that of the Bubbles' plasma, MplsM_{pls}).

Keywords

Cite

@article{arxiv.1312.0692,
  title  = {Steady-State Hadronic Gamma-Ray Emission from 100-Myr-Old Fermi Bubbles},
  author = {Roland M. Crocker and Geoffrey V. Bicknell and Ettore Carretti and Alex S. Hill and Ralph S. Sutherland},
  journal= {arXiv preprint arXiv:1312.0692},
  year   = {2015}
}

Comments

Accepted for publication in ApJ Letters. Shortened from ver.1 with an important modification to equation 2; qualitative results the same; vers 3: title fixed