Spectral index of synchrotron emission: insights from the diffuse and magnetised interstellar medium
arXiv:2106.10929 · doi:10.1051/0004-6361/202140799
Abstract
The interpretation of Galactic synchrotron observations is complicated by the degeneracy between the strength of the magnetic field perpendicular to the line of sight (LOS), , and the cosmic-ray electron (CRe) spectrum. Depending on the observing frequency, an energy-independent spectral energy slope for the CRe spectrum is usually assumed: at frequencies below 400 MHz and at higher frequencies. Motivated by the high angular and spectral resolution of current facilities such as the LOw Frequency ARray (LOFAR) and future telescopes such as the Square Kilometre Array (SKA), we aim to understand the consequences of taking into account the energy-dependent CRe spectral energy slope on the analysis of the spatial variations of the brightness temperature spectral index, , and on the estimate of the average value of along the LOS. We illustrate analytically and numerically the impact that different realisations of the CRe spectrum have on the interpretation of the spatial variation of . We find that the common assumption of an energy-independent is valid only in special cases. We show that for typical magnetic field strengths of the diffuse interstellar medium (220 G), at frequencies of 0.110 GHz, the electrons that are mainly responsible for the synchrotron emission have energies in the range 100 MeV50 GeV. This is the energy range where the spectral slope, , of CRe has its greatest variation. We also show that the polarisation fraction can be much smaller than the maximum value of because the orientation of varies across the telescope's beam and along the LOS. Finally, we present a look-up plot that can be used to estimate the average value of along the LOS from a set of values of measured at centimetre to metre wavelengths, for a given CRe spectrum.
12 pages, 11 figures, accepted by A&A
References in corpus (17)
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- Radio observational constraints on Galactic 3D-emission models
- The cosmic-ray electron flux measured by the PAMELA experiment between 1 and 625 GeV
- Improved upper limits on the 21-cm signal power spectrum of neutral hydrogen at from LOFAR
- Numerical simulations of compressively driven interstellar turbulence: I. Isothermal gas
- Deep multi-redshift limits on Epoch of Reionisation 21cm Power Spectra from Four Seasons of Murchison Widefield Array Observations
- Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence
- 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
- The 21-SPONGE HI Absorption Survey I: Techniques and Initial Results
- Faraday tomography of the local interstellar medium with LOFAR: Galactic foregrounds towards IC342
- Initial LOFAR observations of Epoch of Reionization windows: II. Diffuse polarized emission in the ELAIS-N1 field
- Improved Measurement of the Spectral Index of the Diffuse Radio Background Between 90 and 190 MHz
- ROHSA: Regularized Optimization for Hyper-Spectral Analysis - Application to phase separation of 21 cm data
- Plasma turbulence in the interstellar medium
- Spectral Index of the Diffuse Radio Background Between 50 and 100 MHz
- The multiphase and magnetized neutral hydrogen seen by LOFAR
Cited by in corpus (3)
- Cosmic rays in molecular clouds probed by H rovibrational lines -- Perspectives for the James Webb Space Telescope
- The Orion-Taurus ridge: a synchrotron radio loop at the edge of the Orion-Eridanus superbubble
- Multi-tracer analysis of straight depolarisation canals in the surroundings of the 3C 196 field