Fermi-LAT Observations of High- and Intermediate-Velocity Clouds: Tracing Cosmic Rays in the Halo of the Milky Way
arXiv:1505.04223 · doi:10.1088/0004-637X/807/2/161
Abstract
It is widely accepted that cosmic rays (CRs) up to at least PeV energies are Galactic in origin. Accelerated particles are injected into the interstellar medium where they propagate to the farthest reaches of the Milky Way, including a surrounding halo. The composition of CRs coming to the solar system can be measured directly and has been used to infer the details of CR propagation that are extrapolated to the whole Galaxy. In contrast, indirect methods, such as observations of gamma-ray emission from CR interactions with interstellar gas, have been employed to directly probe the CR densities in distant locations throughout the Galactic plane. In this article we use 73 months of data from the Fermi Large Area Telescope in the energy range between 300 MeV and 10 GeV to search for gamma-ray emission produced by CR interactions in several high- and intermediate-velocity clouds located at up to ~ 7 kpc above the Galactic plane. We achieve the first detection of intermediate-velocity clouds in gamma rays and set upper limits on the emission from the remaining targets, thereby tracing the distribution of CR nuclei in the halo for the first time. We find that the gamma-ray emissivity per H atom decreases with increasing distance from the plane at 97.5% confidence level. This corroborates the notion that CRs at the relevant energies originate in the Galactic disk. The emissivity of the upper intermediate-velocity Arch hints at a 50% decline of CR densities within 2 kpc from the plane. We compare our results to predictions of CR propagation models.
Accepted for publication in the Astrophysical Journal
References in corpus (12)
- Parameterization of Gamma, e^+/- and Neutrino Spectra Produced by p-p Interaction in Astronomical Environment
- Global cosmic-ray related luminosity and energy budget of the Milky Way
- Inverse Compton Origin of the Hard X-Ray and Soft Gamma-Ray Emission from the Galactic Ridge
- CO-dark gas and molecular filaments in Milky Way type galaxies
- Distances to Galactic high-velocity clouds. I. Cohen Stream, complex GCP, cloud g1
- Distances to Galactic high-velocity clouds. Complex C
- Optically thick HI dominant in the local interstellar medium; an alternative interpretation to "dark gas"
- Nuclear enhancement of the photon yield in cosmic ray interactions
- Spiral Arms as Cosmic Ray Source Distributions
- Optimization of Moment Masking for CO Spectral Line Surveys
- The Smith Cloud and its dark matter halo: Survival of a Galactic disc passage
- Searching for Dark Matter Annihilation in the Smith High-Velocity Cloud
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- The extragalactic -ray background: imprints from the physical properties and evolution of star-forming galaxy populations
- An accurate treatment of scattering and diffusion in piecewise power-law models for cosmic ray and radiation/neutrino transport
- Probing local cosmic rays using Fermi-LAT observation of a mid-latitude region in the third Galactic quadrant
- Cosmic Rays and Non-thermal Emission Induced by Accretion of Cool Gas onto the Galactic Disk
- Starburst-Driven Galactic Outflows -- Unveiling the Suppressive Role of Cosmic Ray Halos
- Gamma rays from reaccelerated cosmic rays in high velocity clouds colliding with the Galactic disk