Although galactic outflows play a key role in our understanding of the evolution of galaxies, the exact mechanism by which galactic outflows are driven is still far from being understood and, therefore, our understanding of associated feedback mechanisms that control the evolution of galaxies is still plagued by many enigmas. In this work, we present a simple toy model that can provide insight on how non-axisymmetric instabilities in galaxies (bars, spiral arms, warps) can lead to local exponential magnetic field growth by radial flows beyond the equipartition value by at least two orders of magnitude on a timescale of a few 100 Myr. Our predictions show that the process can lead to galactic outflows in barred spiral galaxies with a mass-lo...
Context. Galactic encounters are usually marked by a substantial increase in synchrotron e...
We explore new observationally constrained subresolution models of galactic outflows and investigate...
Context. Observations of polarized radio emission show that large-scale (regular) magnetic...
Although galactic outflows play a key role in our understanding of the evolution of galaxies, the ex...
none11siThis article has been accepted for publication in MNRAS ©: 2017 The Author(s) Published by O...
Aims. Low-mass galaxies radio observations show in many cases surprisingly high levels of magnetic f...
Context. Magnetic fields in nearby, star-forming galaxies reveal large-scale patterns, as ...
Context. For the first time, our magnetohydrodynamical numerical calculations provide results for a ...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
We study the generation and maintenance of large-scale magnetic fields in barred galaxies. We take ...
Context. Magnetic fields play a very important role in the evolution of galaxies through their direc...
We study the evolution of galactic magnetic fields using 3D smoothed particle magnetohydrodynamics (...
Magnetic fields are an ubiquitous component of our Universe. They are expected to play an important ...
We study the generation and maintenance of large-scale magnetic fields in barred galaxies. We take a...
Magnetic fields have been included in cosmological simulations of galaxy formation only recently. In...
Context. Galactic encounters are usually marked by a substantial increase in synchrotron e...
We explore new observationally constrained subresolution models of galactic outflows and investigate...
Context. Observations of polarized radio emission show that large-scale (regular) magnetic...
Although galactic outflows play a key role in our understanding of the evolution of galaxies, the ex...
none11siThis article has been accepted for publication in MNRAS ©: 2017 The Author(s) Published by O...
Aims. Low-mass galaxies radio observations show in many cases surprisingly high levels of magnetic f...
Context. Magnetic fields in nearby, star-forming galaxies reveal large-scale patterns, as ...
Context. For the first time, our magnetohydrodynamical numerical calculations provide results for a ...
Context. The magnetic fields of spiral galaxies are so strong that they cannot qualify as primordial...
We study the generation and maintenance of large-scale magnetic fields in barred galaxies. We take ...
Context. Magnetic fields play a very important role in the evolution of galaxies through their direc...
We study the evolution of galactic magnetic fields using 3D smoothed particle magnetohydrodynamics (...
Magnetic fields are an ubiquitous component of our Universe. They are expected to play an important ...
We study the generation and maintenance of large-scale magnetic fields in barred galaxies. We take a...
Magnetic fields have been included in cosmological simulations of galaxy formation only recently. In...
Context. Galactic encounters are usually marked by a substantial increase in synchrotron e...
We explore new observationally constrained subresolution models of galactic outflows and investigate...
Context. Observations of polarized radio emission show that large-scale (regular) magnetic...