The Accretion Wind Model of the Fermi Bubbles (II): Radiation
arXiv:1505.00892 · doi:10.1088/0004-637X/811/1/37
Abstract
In a previous work, we have shown that the formation of the Fermi bubbles can be due to the interaction between winds launched from the hot accretion flow in Sgr A* and the interstellar medium (ISM). In that work, we focus only on the morphology. In this paper we continue our study by calculating the gamma-ray radiation. Some cosmic ray protons (CRp) and electrons must be contained in the winds, which are likely formed by physical processes such as magnetic reconnection. We have performed MHD simulations to study the spatial distribution of CRp, considering the advection and diffusion of CRp in the presence of magnetic field. We find that a permeated zone is formed just outside of the contact discontinuity between winds and ISM, where the collisions between CRp and thermal nuclei mainly occur. The decay of neutral pions generated in the collisions, combined with the inverse Compton scattering of background soft photons by the secondary leptons generated in the collisions and primary CR electrons can well explain the observed gamma-ray spectral energy distribution. Other features such as the uniform surface brightness along the latitude and the boundary width of the bubbles are also explained. The advantage of this accretion wind model is that the adopted wind properties come from the detailed small scale MHD numerical simulation of accretion flows and the value of mass accretion rate has independent observational evidences. The success of the model suggests that we may seriously consider the possibility that cavities and bubbles observed in other contexts such as galaxy clusters may be formed by winds rather than jets.
13 pages,6 figures, accepted for publication in ApJ
References in corpus (21)
- Hot Accretion Flows Around Black Holes
- Giant Gamma-ray Bubbles from Fermi-LAT: AGN Activity or Bipolar Galactic Wind?
- Detection of the Characteristic Pion-Decay Signature in Supernova Remnants
- Parameterization of Gamma, e^+/- and Neutrino Spectra Produced by p-p Interaction in Astronomical Environment
- The Spectrum and Morphology of the Fermi Bubbles
- An Unambiguous Detection of Faraday Rotation in Sagittarius A*
- Constraining the Milky Way's Hot Gas Halo with OVII and OVII Emission Lines
- Numerical Simulation of Hot Accretion Flows (III): Revisiting wind properties using trajectory approach
- Giant Magnetized Outflows from the Centre of the Milky Way
- A Magnetohydrodynamic Model for the Formation of Episodic Jets
- A Unified Model of the Fermi Bubbles, Microwave Haze, and Polarized Radio Lobes: Reverse Shocks in the Galactic Center's Giant Outflows
- Fermi Bubbles Inflated by Winds Launched from the Hot Accretion Flow in Sgr A*
- Reconnection in Marginally Collisionless Accretion Disk Coronae
- The Fermi Bubbles Revisited
- A Hadronic-Leptonic Model for the Fermi Bubbles: Cosmic-Rays in the Galactic Halo and Radio Emission
- High Resolution X-ray Spectroscopy of the Local Hot Gas along the 3C 273 Sightline
- Steady-State Hadronic Gamma-Ray Emission from 100-Myr-Old Fermi Bubbles
- Multi-wavelength Emission from the Fermi Bubble III. Stochastic (Fermi) Re-Acceleration of Relativistic Electrons Emitted by SNRs
- Suzaku X-ray Observations of the Fermi Bubbles: Northernmost Cap and Southeast Claw Discovered with MAXI-SSC
- Formation of large-scale magnetic structures associated with the Fermi bubbles
- Multi-wavelength Emission from the Fermi Bubble I. Stochastic acceleration from Background Plasma
Cited by in corpus (27)
- The jet feedback mechanism (jfm) in stars, galaxies and clusters
- Active Galactic Nuclei Feedback in an Elliptical Galaxy with the Most Updated AGN Physics (I): Low-angular Momentum Case
- The Interaction of the Fermi Bubbles with the Milky Way's Hot Gas Halo
- Unveiling the Origin of the Fermi Bubbles
- Simulating the Fermi Bubbles as Forward Shocks Driven by AGN Jets
- Search for Very High Energy Gamma Rays from the Northern Bubble Region with HAWC
- Clues to the origin of Fermi Bubbles from OVIII/OVII line ratio
- Possible connection between the asymmetry of North Polar Spur and Loop I with Fermi Bubbles
- Two-dimensional inflow-wind solution of black hole accretion with an evenly symmetric magnetic field
- On the Role of Hot Feedback Mode in Active Galactic Nuclei Feedback in an Elliptical Galaxy
- A Supernova-driven, Magnetically-collimated Outflow as the Origin of the Galactic Center Radio Bubbles
- The properties of wind and jet from a super-Eddington accretion flow around a supermassive black hole
- A Latitude-Dependent Analysis of the Leptonic Hypothesis for the Fermi Bubbles
- Years Delayed Gamma-ray and Radio Afterglows Originated from TDE Wind-Torus Interactions
- Misaligned jets from Sgr A and the origin of Fermi/eROSITA bubbles
- The Fermi bubbles from stochastic acceleration of electrons in a Galactic outflow
- Fermi bubbles: the collimated outburst needed to explain forward-shock edges
- An Early Catalog of Planet Hosting Multiple Star Systems of Order Three and Higher
- Emission from hadronic and leptonic processes in galactic jet-driven bubbles
- The Bending Feature of the Fermi Bubbles: A Presumed Horizontal Galactic Wind and Its Implication on the Bubbles' Age
- Cosmic rays escaping from Galactic starburst-driven superbubbles
- Galactic breeze origin for the Fermi bubbles emission
- Not gone with the Wind: Survival of High-Velocity Molecular Clouds in the Galactic center
- The AGN Jet Model of the Fermi Bubbles
- Evidence for powerful winds and the associated reverse shock as the origin of the Fermi bubbles
- Multi-wavelength emission from leptonic processes in ageing galaxy bubbles
- The role of magnetic fields in shaping -ray emission from the Fermi bubbles