Magnetic, radiation pressure, and thermal driving are the three mechanisms capable of launching accretion disc winds. In X-ray binaries, radiation pressure is often not significant, as in many systems the luminosity is too low for driving due to continuum transitions yet too high for driving due to line transitions. This leaves thermal and magnetic driving as the contender launching mechanisms in these systems. Using ATHENA++, we perform axisymmetric ideal MHD simulations that include radiative heating and cooling processes appropriate for Compton heated winds to show that the inclusion of magnetic fields into a thermally driven wind has the opposite effect of what one might expect: rather than provide a velocity boost, the thermal wind is ...
Observations of X-ray absorption lines in magnetically driven disc winds around black hole binaries ...
Black hole accretion discs can produce powerful outflowing plasma (disc winds), seen as blue-shifted...
International audienceWe investigate under which conditions cold, fan-shaped winds can be steadily l...
Blueshifted absorption lines are seen in high inclination black hole binary systems in their disc do...
We show the best current simulations of the absorption and emission features predicted from thermal-...
International audienceContext. Dwarf novae (DNe) and X-ray binaries exhibit outbursts thought to be ...
The global evolution and dispersal of protoplanetary disks (PPDs) are governed by disk angular-momen...
[[abstract]]Strong magnetization makes the disks surrounding young stellar objects rotate at rates t...
We use 2D magnetohydrodynamic (MHD) simulations to examine the effects of radiative cooling and inve...
Essentially all low-mass X-ray binaries (LMXBs) in the soft state appear to drive powerful equatoria...
International audienceContext. Dwarf novæ (DNe) and low mass X-ray binaries (LMXBs) show eruptions t...
Context. Photoevaporation and magnetically driven winds are two independent mechanisms that remove m...
Essentially all low-mass X-ray binaries (LMXBs) in the soft state appear to drive powerful equatoria...
We present the first-ever simulations of non-ideal magnetohydrodynamical (MHD) stellar magnetospheri...
Observations of X-ray absorption lines in magnetically driven disc winds around black hole binaries ...
Black hole accretion discs can produce powerful outflowing plasma (disc winds), seen as blue-shifted...
International audienceWe investigate under which conditions cold, fan-shaped winds can be steadily l...
Blueshifted absorption lines are seen in high inclination black hole binary systems in their disc do...
We show the best current simulations of the absorption and emission features predicted from thermal-...
International audienceContext. Dwarf novae (DNe) and X-ray binaries exhibit outbursts thought to be ...
The global evolution and dispersal of protoplanetary disks (PPDs) are governed by disk angular-momen...
[[abstract]]Strong magnetization makes the disks surrounding young stellar objects rotate at rates t...
We use 2D magnetohydrodynamic (MHD) simulations to examine the effects of radiative cooling and inve...
Essentially all low-mass X-ray binaries (LMXBs) in the soft state appear to drive powerful equatoria...
International audienceContext. Dwarf novæ (DNe) and low mass X-ray binaries (LMXBs) show eruptions t...
Context. Photoevaporation and magnetically driven winds are two independent mechanisms that remove m...
Essentially all low-mass X-ray binaries (LMXBs) in the soft state appear to drive powerful equatoria...
We present the first-ever simulations of non-ideal magnetohydrodynamical (MHD) stellar magnetospheri...
Observations of X-ray absorption lines in magnetically driven disc winds around black hole binaries ...
Black hole accretion discs can produce powerful outflowing plasma (disc winds), seen as blue-shifted...
International audienceWe investigate under which conditions cold, fan-shaped winds can be steadily l...