© 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society. The non-thermal radio emission of main-sequence early-type stars is a signature of stellar magnetism. We present multiwavelength (1.6-16.7 GHz) ATCA measurements of the early-type magnetic star ρ OphC, which is a flat-spectrum non-thermal radio source. The ρ OphC radio emission is partially circularly polarized with a steep spectral dependence: the fraction of polarized emission is about 60 at the lowest frequency sub-band (1.6 GHz) while is undetected at 16.7 GHz. This is clear evidence of coherent Auroral Radio Emission (ARE) from the ρ OphC magnetosphere. Interestingly, the detection of the ρ OphC's ARE is not related to a peculiar rota...
In this paper, we present the analysis of incoherent non-thermal radio emission from a sample of hot...
In this paper, we present the analysis of incoherent non-thermal radio emission from a sample of hot...
Understanding the origins of stellar radio emission can provide invaluable insight into the strength...
The non-thermal radio emission of main-sequence early-type stars is a signature of stellar magnetism...
© 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...
We present new ATCA multiwavelength radio measurements (range 2.1–21.2 GHz) of the early-type magnet...
© 2018 The Author(s). We report the detection of the auroral radio emission from the early-type magn...
We report the detection of the auroral radio emission from the early-type magnetic star HD 142301. N...
We present new radio/millimeter measurements of the hot magnetic star HR 5907 obtained with the VLA ...
We have carried out a study of radio emission from a small sample of magnetic O- and B-type stars us...
International audienceWe conducted a survey of seven magnetic O-type stars and eleven B-type stars w...
We conducted a survey of seven magnetic O and eleven B-type stars with masses above $8M_{\odot}$ usi...
Stellar magnetic fields drive a wide range of energetic phenomena, which have a crucial influence on...
© The Author(s), under exclusive licence to Springer Nature Limited 2020Low-frequency (ν ≲ 150 MHz) ...
The electron cyclotron maser is the coherent emission process that gives rise to the radio lighthous...
In this paper, we present the analysis of incoherent non-thermal radio emission from a sample of hot...
In this paper, we present the analysis of incoherent non-thermal radio emission from a sample of hot...
Understanding the origins of stellar radio emission can provide invaluable insight into the strength...
The non-thermal radio emission of main-sequence early-type stars is a signature of stellar magnetism...
© 2020 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Societ...
We present new ATCA multiwavelength radio measurements (range 2.1–21.2 GHz) of the early-type magnet...
© 2018 The Author(s). We report the detection of the auroral radio emission from the early-type magn...
We report the detection of the auroral radio emission from the early-type magnetic star HD 142301. N...
We present new radio/millimeter measurements of the hot magnetic star HR 5907 obtained with the VLA ...
We have carried out a study of radio emission from a small sample of magnetic O- and B-type stars us...
International audienceWe conducted a survey of seven magnetic O-type stars and eleven B-type stars w...
We conducted a survey of seven magnetic O and eleven B-type stars with masses above $8M_{\odot}$ usi...
Stellar magnetic fields drive a wide range of energetic phenomena, which have a crucial influence on...
© The Author(s), under exclusive licence to Springer Nature Limited 2020Low-frequency (ν ≲ 150 MHz) ...
The electron cyclotron maser is the coherent emission process that gives rise to the radio lighthous...
In this paper, we present the analysis of incoherent non-thermal radio emission from a sample of hot...
In this paper, we present the analysis of incoherent non-thermal radio emission from a sample of hot...
Understanding the origins of stellar radio emission can provide invaluable insight into the strength...