International audienceWe have performed 3D isothermal MHD simulation of a magnetic rotating massive star with a non-zero dipole obliquity and predicted the radio/sub-mm observable light curves and continuum spectra for a frequency range compatible with ALMA. From these results we also compare the model input mass-loss to that calculated from the synthetic thermal emission. Spherical and cylindrical symmetry is broken due to the obliquity of the stellar magnetic dipole resulting in an inclination and phase dependence of both the spectral flux and inferred mass-loss rate, providing testable predictions of variability for oblique rotator. Both quantities vary by factors between 2 and 3 over a full rotational period of the star, demonstrating t...
International audienceAims. Recent observations by the Atacama Large Millimeter/submillimeter Array ...
Context. Large millimeter interferometers (ALMA, NOEMA, SMA), with their high spectral resolution an...
We perform three-dimensional numerical simulations of stellar winds of early-M-dwarf stars. Our simu...
International audienceWe have performed 3D isothermal MHD simulation of a magnetic rotating massive ...
We present results from new self-consistent 3D MHD simulations of the magnetospheres from massive st...
In this paper we present a three-dimensional numerical model for the radio emission of Magnetic Chem...
In this paper we present a three-dimensional numerical model for the radio emission of Magnetic Che...
Context. Recent high-resolution observations have shown that stellar winds harbour complexities that...
Building on results from the Magnetism in Massive Stars (MiMeS) project, this paper shows how a two-...
Context. Recent high-resolution observations have shown that stellar winds harbour complexities that...
Magnetic fields significantly influence the evolution of protoplanetary discs and the formation of p...
Context. Recent high-resolution observations have shown that stellar winds harbour complexities that...
International audienceContext. Large millimeter interferometers (ALMA, NOEMA, SMA), with their high ...
International audienceAims. Recent observations by the Atacama Large Millimeter/submillimeter Array ...
Context. Large millimeter interferometers (ALMA, NOEMA, SMA), with their high spectral resolution an...
We perform three-dimensional numerical simulations of stellar winds of early-M-dwarf stars. Our simu...
International audienceWe have performed 3D isothermal MHD simulation of a magnetic rotating massive ...
We present results from new self-consistent 3D MHD simulations of the magnetospheres from massive st...
In this paper we present a three-dimensional numerical model for the radio emission of Magnetic Chem...
In this paper we present a three-dimensional numerical model for the radio emission of Magnetic Che...
Context. Recent high-resolution observations have shown that stellar winds harbour complexities that...
Building on results from the Magnetism in Massive Stars (MiMeS) project, this paper shows how a two-...
Context. Recent high-resolution observations have shown that stellar winds harbour complexities that...
Magnetic fields significantly influence the evolution of protoplanetary discs and the formation of p...
Context. Recent high-resolution observations have shown that stellar winds harbour complexities that...
International audienceContext. Large millimeter interferometers (ALMA, NOEMA, SMA), with their high ...
International audienceAims. Recent observations by the Atacama Large Millimeter/submillimeter Array ...
Context. Large millimeter interferometers (ALMA, NOEMA, SMA), with their high spectral resolution an...
We perform three-dimensional numerical simulations of stellar winds of early-M-dwarf stars. Our simu...