English

Fermi bubbles: the collimated outburst needed to explain forward-shock edges

High Energy Astrophysical Phenomena 2022-09-21 v1 Astrophysics of Galaxies

Abstract

The bipolar, nonthermal, high-latitude lobes known as the Fermi bubbles (FBs) are thought to originate from a massive energy release near the Galactic centre (GC). We constrain the FB engine and the circumgalactic medium (CGM) by analytically and numerically modeling the FB edges as strong forward shocks, as inferred from recent observations. A non-directed energy release produces shocks too spherical to account for observations even for a maximally massive Galactic disc, critical CGM rotation, or injection effectively offset from the GC. In contrast, collimated injection nearly perpendicular to the disc can account for observations in both ballistic (free expansion) and slowdown regimes, as we show using a simple stratified evolution model verified by hydrodynamic simulations. FBs still in their ballistic regime require injection (at z100z\simeq100 pc heights in our model) with a half-opening angle θ4\theta\simeq4^\circ, a normalized velocity β2v/(0.01c)0.4\beta_{-2}\equiv v/(0.01c)\gtrsim 0.4, and an energy E2β22×1055E\gtrsim2\beta_{-2}^2\times 10^{55} erg, launched T3.3β21\mathbb{T}\simeq 3.3\beta_{-2}^{-1} Myr ago, showing a distinctive low-pressure region behind the bubble head. Slowing-down (mass accumulated) FBs require a faster injection, a thinner jet, a smaller E/(β2θ)2E/(\beta_{-2}\theta)^{2}, and a comparable T\mathbb{T}, and follow a ballistic stage that must reach a height zs5z_{s}\gtrsim 5 kpc.

Keywords

Cite

@article{arxiv.2109.03834,
  title  = {Fermi bubbles: the collimated outburst needed to explain forward-shock edges},
  author = {Santanu Mondal and Uri Keshet and Kartick C. Sarkar and Ilya Gurwich},
  journal= {arXiv preprint arXiv:2109.03834},
  year   = {2022}
}

Comments

18 pages, 17 figures, 3 tables; comments welcome

R2 v1 2026-06-24T05:48:02.811Z