Cosmic Ray transport in mixed magnetic fields and their role on the observed anisotropies
arXiv:2101.07759 · doi:10.1093/mnras/staa3500
Abstract
There is a growing set of observational data demonstrating that cosmic rays exhibit small-scale anisotropies (5-30 deg) with amplitude deviations lying between 0.01-0.1 percent that of the average cosmic ray flux. A broad range of models have been proposed to explain these anisotropies ranging from finite-scale magnetic field structures to dark matter annihilation. The standard diffusion transport methods used in cosmic ray propagation do not capture the transport physics in a medium with finite-scale or coherent magnetic field structures. Here, we present a Monte Carlo transport method, applying it to a series of finite-scale magnetic field structures to determine the requirements of such fields in explaining the observed cosmic ray,small-scale anisotropies.
14 pages, 13 figures
References in corpus (13)
- On the Origin of Cosmic Magnetic Fields
- Anisotropy and Corotation of Galactic Cosmic Rays
- Discovery of Localized Regions of Excess 10-TeV Cosmic Rays
- The Large Scale Cosmic-Ray Anisotropy as Observed with Milagro
- Measurement of the Anisotropy of Cosmic Ray Arrival Directions with IceCube
- Evolution of the cosmic ray anisotropy above 10^{14} eV
- Observation of Cosmic Ray Anisotropy with the IceTop Air Shower Array
- The structure and statistics of interstellar turbulence
- Local Simulations of Spiral Galaxies with the TIGRESS Framework: I. Star Formation and Arm Spurs/Feathers
- The puzzling MILAGRO hot spots
- The Milagro anticenter hot spots: cosmic rays from the Geminga supernova ?
- Probing Nearby CR Accelerators and ISM Turbulence with Milagro Hot Spots
- Time Evolution of the Large-Scale Tail of Nonhelical Primordial Magnetic Fields with Back-Reaction of the Turbulent Medium