It is now a well-established fact that also very low mass stars harbor planetary systems. These stars represent the large majority of our nearby stars but, despite their proximity, their low optical luminosity makes it difficult to apply the usual methods for exoplanet search. An effective probe for the environment of these stars is the auroral radio emission. This kind of emission is well understood for those stars whose magnetic field can be approximated as a dipole. In these cases the radio emission has a peculiar signature in time and in polarization. The presence of a planet nearby the star triggers or perturbs this emission leading to a predictable modulation. We present the case study of the ultra-cool dwarf TVLM 513-46546, for which...
For more than thirty years, radio astronomers have searched for auroral emission from exoplanets. Wi...
Understanding the origins of stellar radio emission can provide invaluable insight into the strength...
The relatively high contrast between planetary and solar low frequency radio emissions suggests that...
It is now a well-established fact that also very low mass stars harbor planetary systems. These star...
It is now a well-established fact that also very low mass stars harbor planetary systems. These star...
Low-frequency (ν ≲ 150 MHz) stellar radio emission is expected to originate in the outer corona at h...
Low-frequency (ν ≲ 150 MHz) stellar radio emission is expected to originate in the outer corona at h...
For more than thirty years, radio astronomers have searched for auroral emission from exoplanets. Wi...
Stellar magnetic fields drive a wide range of energetic phenomena, which have a crucial influence on...
Aurorae are detected from all the magnetized planets in our Solar System, including Earth(1). They a...
© 2018 The Author(s). We report the detection of the auroral radio emission from the early-type magn...
Recently, a number of ultracool dwarfs have been found to produce periodic radio bursts with high br...
We have observed six late L and T dwarfs with the Karl G. Jansky Very Large Array (VLA) to investiga...
Brown dwarfs display Jupiter-like auroral phenomena such as magnetospheric Hα emission and coherent ...
International audienceThe relatively high contrast between planetary and solar low-frequency radio e...
For more than thirty years, radio astronomers have searched for auroral emission from exoplanets. Wi...
Understanding the origins of stellar radio emission can provide invaluable insight into the strength...
The relatively high contrast between planetary and solar low frequency radio emissions suggests that...
It is now a well-established fact that also very low mass stars harbor planetary systems. These star...
It is now a well-established fact that also very low mass stars harbor planetary systems. These star...
Low-frequency (ν ≲ 150 MHz) stellar radio emission is expected to originate in the outer corona at h...
Low-frequency (ν ≲ 150 MHz) stellar radio emission is expected to originate in the outer corona at h...
For more than thirty years, radio astronomers have searched for auroral emission from exoplanets. Wi...
Stellar magnetic fields drive a wide range of energetic phenomena, which have a crucial influence on...
Aurorae are detected from all the magnetized planets in our Solar System, including Earth(1). They a...
© 2018 The Author(s). We report the detection of the auroral radio emission from the early-type magn...
Recently, a number of ultracool dwarfs have been found to produce periodic radio bursts with high br...
We have observed six late L and T dwarfs with the Karl G. Jansky Very Large Array (VLA) to investiga...
Brown dwarfs display Jupiter-like auroral phenomena such as magnetospheric Hα emission and coherent ...
International audienceThe relatively high contrast between planetary and solar low-frequency radio e...
For more than thirty years, radio astronomers have searched for auroral emission from exoplanets. Wi...
Understanding the origins of stellar radio emission can provide invaluable insight into the strength...
The relatively high contrast between planetary and solar low frequency radio emissions suggests that...