Diffuse cosmic rays shining in the Galactic center: A novel interpretation of H.E.S.S. and Fermi-LAT gamma-ray data
arXiv:1702.01124 · doi:10.1103/PhysRevLett.119.031101
Abstract
We present a novel interpretation of the -ray diffuse emission measured by Fermi-LAT and H.E.S.S. in the Galactic center (GC) region and the Galactic ridge (GR). In the first part we perform a data-driven analysis based on PASS8 Fermi-LAT data: we extend down to few GeV the spectra measured by H.E.S.S. and infer the primary cosmic-ray (CR) radial distribution between 0.1 and 3 TeV. In the second part we adopt a CR transport model based on a position-dependent diffusion coefficient. Such behavior reproduces the radial dependence of the CR spectral index recently inferred from the Fermi-LAT observations. We find that the bulk of the GR emission can be naturally explained by the interaction of the diffuse steady-state Galactic CR sea with the gas present in the Central Molecular Zone. Although our results leave room for a residual radial-dependent emission associated with a central source, the relevance of the large-scale background prevents from a solid evidence of a GC Pevatron.
5 pages, 3 figures, accepted for publication in Physical Review Letters
References in corpus (5)
- Discrepant hardening observed in cosmic-ray elemental spectra
- Parameterization of Gamma, e^+/- and Neutrino Spectra Produced by p-p Interaction in Astronomical Environment
- Spatial distribution of interstellar gas in the innermost 3 kpc of our Galaxy
- Cosmic-ray propagation with DRAGON2: I. numerical solver and astrophysical ingredients
- Gamma-ray sky points to radial gradients in cosmic-ray transport
Cited by in corpus (54)
- The Fermi Galactic Center GeV Excess and Implications for Dark Matter
- The origin of Galactic cosmic rays: challenges to the standard paradigm
- Sensitivity of the Cherenkov Telescope Array to a dark matter signal from the Galactic centre
- Joint constraints on Galactic diffuse neutrino emission from ANTARES and IceCube
- Search for Sources of Astrophysical Neutrinos Using Seven Years of IceCube Cascade Events
- Energetics of High-Energy Cosmic Radiations
- A signature of anisotropic cosmic-ray transport in the gamma-ray sky
- Turbulence-Level Dependence of Cosmic-Ray Parallel Diffusion
- Hint for a TeV neutrino emission from the Galactic Ridge with ANTARES
- Probing the "Sea" of Galactic Cosmic Rays with Fermi-LAT
- MAGIC observations of the diffuse -ray emission in the vicinity of the Galactic Centre
- New Constraints on all flavour Galactic diffuse neutrino emission with the ANTARES telescope
- Regimes of cosmic-ray diffusion in Galactic turbulence
- Galactic diffuse gamma rays meet the PeV frontier
- Gamma rays as probes of cosmic-ray propagation and interactions in galaxies
- Probing the Particle Spectrum of Nature with Evaporating Black Holes
- The theory of cosmic-ray scattering on pre-existing MHD modes meets data
- High-energy Cosmic Ray production in X-ray Binary Jets
- Simulating the Galactic Multi-messenger Emissions with HERMES
- On particle acceleration and transport in plasmas in the Galaxy: theory and observations
- Where are Milky Way's Hadronic PeVatrons?
- Observational signatures of cosmic ray interactions in molecular clouds
- Probing the formation history of the nuclear star cluster at the Galactic Centre with millisecond pulsars
- Probing galactic cosmic ray distribution with TeV gamma-ray sky
- Time Evolution of Gamma Rays from Supernova Remnants
- Pevatron at the Galactic Center: Multi-Wavelength Signatures from Millisecond Pulsars
- A Minimal Model for Neutral Naturalness and pseudo-Nambu-Goldstone Dark Matter
- Constraints on very high energy gamma-ray emission from the Fermi Bubbles with future ground-based experiments
- On the search for Galactic supernova remnant PeVatrons with current TeV instruments
- Inverse Compton emission from millisecond pulsars in the Galactic bulge
- Sensitivity of the Cherenkov Telescope Array to dark subhalos
- Cherenkov Telescope Array sensitivity to branon dark matter models
- Multi-TeV dark matter density in the inner Milky Way halo: spectral and dynamical constraints
- Hadronic Interactions of Energetic Charged Particles in Protogalactic Outflow Environments and Implications for the Early Evolution of Galaxies
- Mind the gap: The discrepancy between simulation and reality drives interpretations of the Galactic Center Excess
- Identifying Galactic Sources of High-Energy Neutrinos
- Cosmic rays cannot explain the high ionisation rates in the Galactic centre
- Gamma-ray and Synchrotron Radiation from Dark Matter annihilations in Ultra-faint Dwarf Galaxies
- Multimessenger TeV Dark Matter: a mini review
- Setting an upper limit for the total TeV neutrino flux from the disk of our Galaxy
- One-point fluctuation analysis of IceCube neutrino events outlines a significant unassociated isotropic component and constrains the Galactic contribution
- A multi-messenger study of the total galactic high-energy neutrino emission
- The Origin of the Very-High-Energy Diffuse -Ray Emission: The Case for Galactic Source Cocoons
- A discussion on the origin of the sub-PeV Galactic gamma-ray emission
- Sensitivity of the Cherenkov Telescope Array to a dark matter signal from the Galactic centre
- Probing maximum energy of cosmic rays in SNR through gamma rays and neutrinos from the molecular clouds around SNR W28
- Time-dependent escape of cosmic rays from supernova remnants potentially at the origin of the very-high-energy cosmic-ray gradient of the Galactic center
- Towards an anagraphical picture of high-energy Galactic neutrinos
- GammaBayes: a Bayesian pipeline for dark matter detection with CTA
- A GeV-TeV particle component and the barrier of cosmic-ray sea in the Central Molecular Zone
- Search for Diffuse Galactic Neutrinos with the Full ANTARES Telescope Dataset
- High Energy Emission from the Galactic Center
- TeV-PeV Gamma-ray and Neutrino Emission in the Galactic Plane
- Interpreting the LHAASO Galactic diffuse emission data