We consider modulations of mass captured by the compact object from the companion star’s stellar wind in Low Mass X-ray Binaries with late type giants. Based on 3D simulations with two different hydrodynamic codes used Lagrangian and Eulerian approaches – the SPH code GADGET and the Eulerian code PLUTO, we conclude that a hydrodynamical interaction of the wind matter within a binary system even without eccentricity results in variability of the mass accretion rate with characteristic time-scales close to the orbital period. Observational appearances of this wind might be similar to that of an accretion disc corona/wind
This thesis work is concerned with the accretion processes and flow structures associated with stell...
Binary systems with an accreting compact object offer a unique opportunity to investigate the strong...
Accretion and outflows are key processes in early stellar evolution. The material accreted at the ed...
We consider modulations of mass captured by the compact object from the companion star’s stellar win...
In this paper we propose and examine a physical mechanism which can lead to the generation of noise ...
In this paper we propose and examine a physical mechanism which can lead to the generation of noise ...
We have carried out radiation-hydrodynamic simulations of thermally-driven accretion disc winds in l...
We have carried out radiation-hydrodynamic simulations of thermally driven accretion disc winds in l...
International audienceIn the last decade, X-ray spectroscopy has enabled a wealth of discoveries of ...
Aims. We have developed a new code for the three-dimensional time-dependent raditation hyd...
We discuss the variability of winds in two low-mass X-ray binaries, GX 13+1 and 4U 1630-47. XMM-Newt...
Context. The first million years of the pre-main-sequence (PMS) evolution of low-mass stars are char...
We show that stable disk accretion should be very rare among low-mass X-ray binaries and cataclysmic...
Context. In high mass X-ray binaries, an accreting compact object orbits a high mass star, which los...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Strongly magnetized, accreting neutron stars sho...
This thesis work is concerned with the accretion processes and flow structures associated with stell...
Binary systems with an accreting compact object offer a unique opportunity to investigate the strong...
Accretion and outflows are key processes in early stellar evolution. The material accreted at the ed...
We consider modulations of mass captured by the compact object from the companion star’s stellar win...
In this paper we propose and examine a physical mechanism which can lead to the generation of noise ...
In this paper we propose and examine a physical mechanism which can lead to the generation of noise ...
We have carried out radiation-hydrodynamic simulations of thermally-driven accretion disc winds in l...
We have carried out radiation-hydrodynamic simulations of thermally driven accretion disc winds in l...
International audienceIn the last decade, X-ray spectroscopy has enabled a wealth of discoveries of ...
Aims. We have developed a new code for the three-dimensional time-dependent raditation hyd...
We discuss the variability of winds in two low-mass X-ray binaries, GX 13+1 and 4U 1630-47. XMM-Newt...
Context. The first million years of the pre-main-sequence (PMS) evolution of low-mass stars are char...
We show that stable disk accretion should be very rare among low-mass X-ray binaries and cataclysmic...
Context. In high mass X-ray binaries, an accreting compact object orbits a high mass star, which los...
© 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Strongly magnetized, accreting neutron stars sho...
This thesis work is concerned with the accretion processes and flow structures associated with stell...
Binary systems with an accreting compact object offer a unique opportunity to investigate the strong...
Accretion and outflows are key processes in early stellar evolution. The material accreted at the ed...