Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of turbulence injects energy to the interstellar medium) and the ratio of the random to ordered components of the magnetic field are key parameters to characterise magnetic turbulence in the interstellar gas, which affects the propagation of cosmic rays within the Galaxy. We provide new constraints to those two parameters. Methods. We use the LOw Frequency ARray (LOFAR) to image the diffuse continuum emission in the Fan region at (l,b) ~ (137.0, +7.0) at 80'' × 70'' resolution in the range [146, 174] MHz. We detect multi-scale fluctuations in the Galactic synchrotron emission and compute their power spectrum. Applying theoretical estimates and de...
Context. Cosmic rays (CRs) and the Galactic magnetic field (GMF) are fundamental actors in many proc...
We discuss, using simple analytical models and magnetohydrodynamic (MHD) simulations, the origin and...
We estimate the power spectrum of HI intensity fluctuations for a sample of eight galaxies (seven dw...
Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of t...
Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of t...
International audienceAims: The characteristic outer scale of turbulence (i.e. the scale at which th...
Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of t...
Aims. The characteristic outer scale of turbulence (i. e. the scale at which the dominant source of ...
Aims. Radio synchrotron polarization maps of the Galaxy can be used to infer the propertie...
Fluctuations in the Galactic synchrotron emission can be traced by the angular power spectrum of rad...
We develop a visibility based power spectrum estimator to probe the power spectrum directly from the...
Magnetohydrodynamic turbulence is a ubiquitous and fundamental ingredient underlying many astrophysi...
We provide a theoretical description of synchrotron fluctuations arising from magnetic turbulence. W...
In star-forming galaxies, the far-infrared (FIR) and radio-continuum luminosities obey a tight empir...
Context. Cosmic rays (CRs) and the Galactic magnetic field (GMF) are fundamental actors in many proc...
We discuss, using simple analytical models and magnetohydrodynamic (MHD) simulations, the origin and...
We estimate the power spectrum of HI intensity fluctuations for a sample of eight galaxies (seven dw...
Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of t...
Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of t...
International audienceAims: The characteristic outer scale of turbulence (i.e. the scale at which th...
Aims. The characteristic outer scale of turbulence (i.e. the scale at which the dominant source of t...
Aims. The characteristic outer scale of turbulence (i. e. the scale at which the dominant source of ...
Aims. Radio synchrotron polarization maps of the Galaxy can be used to infer the propertie...
Fluctuations in the Galactic synchrotron emission can be traced by the angular power spectrum of rad...
We develop a visibility based power spectrum estimator to probe the power spectrum directly from the...
Magnetohydrodynamic turbulence is a ubiquitous and fundamental ingredient underlying many astrophysi...
We provide a theoretical description of synchrotron fluctuations arising from magnetic turbulence. W...
In star-forming galaxies, the far-infrared (FIR) and radio-continuum luminosities obey a tight empir...
Context. Cosmic rays (CRs) and the Galactic magnetic field (GMF) are fundamental actors in many proc...
We discuss, using simple analytical models and magnetohydrodynamic (MHD) simulations, the origin and...
We estimate the power spectrum of HI intensity fluctuations for a sample of eight galaxies (seven dw...