The formation and history of cosmic magnetism is still widely unknown. Significant progress can be made through the study of magnetic fields properties in the large-scale structure of the Universe: galaxy clusters, filaments, and voids of the cosmic web. A powerful tool to study magnetization of these environments is represented by radio observations of diffuse synchrotron sources and background or embedded radio galaxies. To draw a detailed picture of cosmic magnetism, high-quality data of these sources need to be used in conjunction with sophisticated tools of analysis
Faraday rotation and synchrotron emission from extragalactic radio sources give evidence for the pre...
Magnetic fields appear to be ubiquitous in astrophysical environments including the large-scale stru...
Magnetic fields in the Milky Way are present on a wide variety of sizes and strengths, influencing m...
The formation and history of cosmic magnetism is still widely unknown. Significant progress can be m...
Magnetic fields are everywhere in space and their presence is believed to play a crucial role in the...
Most of the visible matter in the Universe is ionized, so that cosmic magnetic fields are quite easy...
The simulations of the formation of cosmological structure allows to determine the spatial inhomogen...
open4siWe review the present theoretical and numerical understanding of magnetic field amplification...
open8siACKNOWLEDGEMENTS The authors would like to acknowledge the help, work, and sharp eye of T. H...
The detection of the radio signal from filaments in the cosmic web is crucial to distinguish possibl...
Magnetic fields originate small-scale instabilities in the plasma of the intra-cluster medium, and m...
Magnetic fields are known to permeate space over a remarkable range of scales, from meter-large bodi...
The origin of extragalactic magnetic fields is still poorly understood. Based on a dedicated suite o...
A new era for radio astronomy is coming. The Square Kilometre Array, with its unprecedented capabili...
Strong accretion shocks are expected to illuminate the warm-hot intergalactic medium encompassed by ...
Faraday rotation and synchrotron emission from extragalactic radio sources give evidence for the pre...
Magnetic fields appear to be ubiquitous in astrophysical environments including the large-scale stru...
Magnetic fields in the Milky Way are present on a wide variety of sizes and strengths, influencing m...
The formation and history of cosmic magnetism is still widely unknown. Significant progress can be m...
Magnetic fields are everywhere in space and their presence is believed to play a crucial role in the...
Most of the visible matter in the Universe is ionized, so that cosmic magnetic fields are quite easy...
The simulations of the formation of cosmological structure allows to determine the spatial inhomogen...
open4siWe review the present theoretical and numerical understanding of magnetic field amplification...
open8siACKNOWLEDGEMENTS The authors would like to acknowledge the help, work, and sharp eye of T. H...
The detection of the radio signal from filaments in the cosmic web is crucial to distinguish possibl...
Magnetic fields originate small-scale instabilities in the plasma of the intra-cluster medium, and m...
Magnetic fields are known to permeate space over a remarkable range of scales, from meter-large bodi...
The origin of extragalactic magnetic fields is still poorly understood. Based on a dedicated suite o...
A new era for radio astronomy is coming. The Square Kilometre Array, with its unprecedented capabili...
Strong accretion shocks are expected to illuminate the warm-hot intergalactic medium encompassed by ...
Faraday rotation and synchrotron emission from extragalactic radio sources give evidence for the pre...
Magnetic fields appear to be ubiquitous in astrophysical environments including the large-scale stru...
Magnetic fields in the Milky Way are present on a wide variety of sizes and strengths, influencing m...