The Propagation of Cosmic Rays from the Galactic Wind Termination Shock: Back to the Galaxy?
arXiv:1803.08376 · doi:10.3847/1538-4357/aabfdd
Abstract
Although several theories for the origin of cosmic rays in the region between the spectral `knee' and `ankle' exist, this problem is still unsolved. A variety of observations suggest that the transition from Galactic to extragalactic sources occurs in this energy range. In this work we examine whether a Galactic wind which eventually forms a termination shock far outside the Galactic plane can contribute as a possible source to the observed flux in the region of interest. Previous work by Bustard et al. (2017) estimated that particles can be accelerated up to energies above the `knee' up to eV for parameters drawn from a model of a Milky Way wind (Everett et al. 2017). A remaining question is whether the accelerated cosmic rays can propagate back into the Galaxy. To answer this crucial question, we simulate the propagation of the cosmic rays using the low energy extension of the CRPropa framework, based on the solution of the transport equation via stochastic differential equations. The setup includes all relevant processes, including three-dimensional anisotropic spatial diffusion, advection, and corresponding adiabatic cooling. We find that, assuming realistic parameters for the shock evolution, a possible Galactic termination shock can contribute significantly to the energy budget in the `knee' region and above. We estimate the resulting produced neutrino fluxes and find them to be below measurements from IceCube and limits by KM3NeT.
16 pages, 16 figures, 1 table, accepted in ApJ
References in corpus (11)
- Detection of the Characteristic Pion-Decay Signature in Supernova Remnants
- The Fermi Bubbles: Giant, Multi-Billion-Year-Old Reservoirs of Galactic Center Cosmic Rays
- Cosmic-ray propagation with DRAGON2: I. numerical solver and astrophysical ingredients
- A kinetic approach to cosmic ray induced streaming instability at supernova shocks
- A Galactic Halo Origin of the Neutrinos Detected by IceCube
- Influence of hadronic interaction models and the cosmic ray spectrum on the high energy atmospheric muon and neutrino flux
- Time-dependent galactic winds I. Structure and evolution of galactic outflows accompanied by cosmic ray acceleration
- High-energy neutrinos from radio galaxies
- Origin of very high and ultra high energy cosmic rays
- Cosmic Ray Acceleration by a Versatile Family of Galactic Wind Termination Shocks
- Cosmic Rays in a Galactic Breeze
Cited by in corpus (10)
- Ultra-High-Energy Cosmic Rays
- CRPropa 3.2 -- an advanced framework for high-energy particle propagation in extragalactic and galactic spaces
- Massive star cluster origin for the galactic cosmic ray population at very-high energies
- Accelerating strangelets via Penrose process in non-BPS fuzzballs
- Cosmic ray driven galactic winds
- Reacceleration of Galactic Cosmic Rays Beyond the Knee at the Termination Shock of a Cosmic-Ray-Driven Galactic Wind
- Superdiffusion of energetic particles at shocks: A Lévy Flight model for acceleration
- An exact analytical solution for the weakly magnetized flow around an axially symmetric paraboloid, with application to magnetosphere models
- Cosmic ray transport and acceleration in an evolving shock landscape
- Magnetohydrodynamic turbulence and the associated spatial diffusion tensor of cosmic rays in dynamical galactic halos