Connecting Synchrotron, Cosmic Rays, and Magnetic Fields in the Plane of the Galaxy
arXiv:1105.5885 · doi:10.1111/j.1365-2966.2011.19114.x
Abstract
We extend previous work modeling the Galactic magnetic field in the plane using synchrotron emission in total and polarised intensity. In this work, we include a more realistic treatment of the cosmic-ray electrons using the GALPROP propagation code optimized to match the existing high-energy data. This addition reduces the degeneracies in our previous analysis and when combined with an additional observed synchrotron frequency allows us to study the low-energy end of the cosmic-ray electron spectrum in a way that has not previously been done. For a pure diffusion propagation, we find a low-energy injection spectrum slightly harder than generally assumed; for J(E) \propto E^α, we find α = -1.34 \pm 0.12, implying a very sharp break with the spectrum above a few GeV. This then predicts a synchrotron brightness temperature spectral index, β, on the Galactic plane that is -2.8 < β < -2.74 below a few GHz and -2.98 < β < -2.91 up to 23 GHz. We find that models including cosmic-ray re-acceleration processes appear to be incompatible with the synchrotron data.
12 pages, 10 figures. Accepted for publication in MNRAS. This research was supported by the Agence Nationale de la Recherche (ANR-08-CEXC-0002-01)
References in corpus (7)
- Fermi LAT observations of cosmic-ray electrons from 7 GeV to 1 TeV
- Constraints on cosmic-ray propagation models from a global Bayesian analysis
- Global cosmic-ray related luminosity and energy budget of the Milky Way
- Rotation Measures of Extragalactic Sources Behind the Southern Galactic Plane: New Insights into the Large-Scale Magnetic Field of the Inner Milky Way
- Modeling the Magnetic Field in the Galactic Disk using New Rotation Measure Observations from the Very Large Array
- All-sky Galactic radiation at 45 MHz and spectral index between 45 and 408 MHz
- Simulating polarized Galactic synchrotron emission at all frequencies, the Hammurabi code
Cited by in corpus (43)
- A New Model of the Galactic Magnetic Field
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- The Galactic Magnetic Field
- The pre-launch Planck Sky Model: a model of sky emission at submillimetre to centimetre wavelengths
- The interstellar cosmic-ray electron spectrum from synchrotron radiation and direct measurements
- Galactic synchrotron emission with cosmic ray propagation models
- Gamma-ray sky points to radial gradients in cosmic-ray transport
- Low-frequency Faraday rotation measures towards pulsars using LOFAR: probing the 3-D Galactic halo magnetic field
- Imprints of Cosmic Rays in Multifrequency Observations of the Interstellar Emission
- Magnetic Fields in the Milky Way
- Physical Attributes of Anisotropic Compact Stars in Gravity
- Synchrotron Spectral Curvature from 22 MHz to 23 GHz
- The C-Band All-Sky Survey (C-BASS): Design and capabilities
- A derivation of the free-free emission on the Galactic plane between l=20 and 44 degrees
- Gravastars in Gravity
- Comparing Polarised Synchrotron and Thermal Dust Emission in the Galactic Plane
- Cosmic-ray acceleration and escape from post-adiabatic Supernova remnants
- Practical Modeling of Large-Scale Galactic Magnetic Fields: Status and Prospects
- Breaks in interstellar spectra of positrons and electrons derived from time-dependent AMS data
- Toward a hybrid dynamo model for the Milky Way
- Cosmic ray propagation in galactic turbulence
- Simulating the Galactic Multi-messenger Emissions with HERMES
- Implementation of CR Energy SPectrum (CRESP) algorithm in PIERNIK MHD code. I. Spectrally resolved propagation of CR electrons on Eulerian grids
- C-Band All-Sky Survey: A First Look at the Galaxy
- Supernova-regulated ISM -- V. Space- and time-correlations
- Absolutely calibrated radio polarimetry of the inner Galaxy at 2.3 GHz and 4.8 GHz
- What can be learnt from UHECR anisotropies observations? Paper I : large-scale anisotropies and composition features
- Anisotropy expectations for ultra-high-energy cosmic rays with future high statistics experiments
- The Fan Region at 1.5 GHz. I: Polarized synchrotron emission extending beyond the Perseus Arm
- Full-sky Models of Galactic Microwave Emission and Polarization at Sub-arcminute Scales for the Python Sky Model
- The C-Band All-Sky Survey (C-BASS): Constraining diffuse Galactic radio emission in the North Celestial Pole region
- Template fitting of WMAP 7-year data: anomalous dust or flattening synchrotron emission?
- Implications on Spatial Models of Interstellar Gamma-Ray Inverse-Compton Emission from Synchrotron Emission Studies in Radio and Microwaves
- The Galaxy in circular polarization: all-sky radio prediction, detection strategy, and the charge of the leptonic cosmic rays
- Foreground Bias From Parametric Models of Far-IR Dust Emission
- And then they were two: detection of non-thermal radio emission from the bow shocks of two runaway stars
- Galactic halo bubble magnetic fields and UHECR deflections
- Compact relativistic geometries in gravity
- Limits on compression of cosmic rays in supernova remnants
- Evidence for GeV Cosmic Rays from White Dwarfs in the Local Cosmic Ray Spectra and in the Gamma-ray Emissivity of the Inner Galaxy
- The GALPROP Cosmic-ray Propagation and Non-thermal Emissions Framework: Release v57
- Constraining the population of dark matter halo shapes using hierarchical inference with extragalactic stellar streams
- Combined analyses of the antiproton production from cosmic-ray interactions and its possible dark matter origin