Context. γ Cas is known for its unusually hard and intense X-ray emission. This emission could trace accretion by a compact companion, wind interaction with a hot sub-dwarf companion, or magnetic interaction between the star and its Be decretion disc. Aims. These various scenarios should lead to diverse dependences of the hard X-ray emission on disc density. To test these scenarios, we collected X-ray observations of γ Cas during an episode of enhanced disc activity that took place around January 2021. Methods. We investigate the variations in the disc properties using time series of dedicated optical spectroscopy and existing broadband photometry. Equivalent widths and peak velocity separations are measured for a number of prominent emissi...
International audienceUsing observations from Chandra, Swift and XMM-Newton, we investigate the high...
peer reviewedTo help constrain the origin of the peculiar X-ray emission of γ Cas stars, we conducte...
Context. Be stars are physically complex systems that continue to challenge theory to understand the...
Context. γ Cas is known for its unusually hard and intense X-ray emission. This emission could trace...
International audienceContext. γ Cas is known for its unusually hard and intense X-ray emission. Thi...
peer reviewedgamma Cas is known for its hard and intense X-ray emission that could trace accretion ...
Context. A growing number of Be and Oe stars, named the γ Cas stars, are known for their unusually h...
Context. A growing number of Be and Oe stars, named the γ Cas stars, are known for their unusually h...
γ Cas is the prototypical classical Be star and is recently best known for its variable hard X-ray e...
γ Cas is the prototypical classical Be star and is recently best known for its variable hard X-ray e...
peer reviewedThe Hα emission of a set of southern γ Cas stars was monitored since 2019, with the aim...
Context. Be/X-ray binaries (BeXRBs) are the most populous class of high-mass X-ray binaries. Their X...
Context. High-mass X-ray binaries are bright X-ray sources. The high-energy emission is caused by th...
Context. Be/X-ray binaries (BeXRBs) are the most populous class of high-mass X-ray binaries. Their X...
γ Cas stars are a ∼1% minority among classical Be stars with hard (≥5−10 keV), but only moderately s...
International audienceUsing observations from Chandra, Swift and XMM-Newton, we investigate the high...
peer reviewedTo help constrain the origin of the peculiar X-ray emission of γ Cas stars, we conducte...
Context. Be stars are physically complex systems that continue to challenge theory to understand the...
Context. γ Cas is known for its unusually hard and intense X-ray emission. This emission could trace...
International audienceContext. γ Cas is known for its unusually hard and intense X-ray emission. Thi...
peer reviewedgamma Cas is known for its hard and intense X-ray emission that could trace accretion ...
Context. A growing number of Be and Oe stars, named the γ Cas stars, are known for their unusually h...
Context. A growing number of Be and Oe stars, named the γ Cas stars, are known for their unusually h...
γ Cas is the prototypical classical Be star and is recently best known for its variable hard X-ray e...
γ Cas is the prototypical classical Be star and is recently best known for its variable hard X-ray e...
peer reviewedThe Hα emission of a set of southern γ Cas stars was monitored since 2019, with the aim...
Context. Be/X-ray binaries (BeXRBs) are the most populous class of high-mass X-ray binaries. Their X...
Context. High-mass X-ray binaries are bright X-ray sources. The high-energy emission is caused by th...
Context. Be/X-ray binaries (BeXRBs) are the most populous class of high-mass X-ray binaries. Their X...
γ Cas stars are a ∼1% minority among classical Be stars with hard (≥5−10 keV), but only moderately s...
International audienceUsing observations from Chandra, Swift and XMM-Newton, we investigate the high...
peer reviewedTo help constrain the origin of the peculiar X-ray emission of γ Cas stars, we conducte...
Context. Be stars are physically complex systems that continue to challenge theory to understand the...