Context. Runaway O- and early B-type stars passing through the interstellar medium at supersonic velocities and characterized by strong stellar winds may produce bow shocks that can serve as particle acceleration sites. Previous theoretical models predict the production of high-energy photons by nonthermal radiative processes, but their efficiency is still debated. Aims. We aim to test and explain the possibility of emission from the bow shocks formed by runaway stars traveling through the interstellar medium by using previous theoretical models. Methods. We applied our model to AE Aurigae, the first reported star with an X-ray detected bow shock, to BD+43 3654, in which the observations failed in detecting high-energy emission, and...
Context. Runaway stars form bow shocks by ploughing through the interstellar medium at supersonic sp...
Context. The environs of massive, early-type stars have been inspected in recent years in the search...
International audienceMassive stars that have been ejected from their parent cluster and supersonica...
Context. Runaway O- and early B-type stars passing through the interstellar medium at supersonic vel...
Context. Runaway O- and early B-type stars passing through the interstellar medium at supersonic vel...
Since the detection of nonthermal radio emission from the bow shock of the massive runaway star BD +...
Runaway stars produce shocks when passing through interstellar medium at supersonic velocities. Bow ...
Runaway stars produce shocks when passing through interstellar medium at supersonic velocities. Bow ...
Runaway stars produce shocks when passing through interstellar medium at supersonic velocities. Bow ...
Context: Runaway stars form bow shocks by ploughing through the interstellar medium at supersonic sp...
At least 5 per cent of the massive stars are moving supersonically through the interstellar medium (...
peer reviewedMassive runaway stars produce bow shocks through the interaction of their winds with th...
Context. Runaway stars form bow shocks by ploughing through the interstellar medium at supersonic sp...
Context. The environs of massive, early-type stars have been inspected in recent years in the search...
International audienceMassive stars that have been ejected from their parent cluster and supersonica...
Context. Runaway O- and early B-type stars passing through the interstellar medium at supersonic vel...
Context. Runaway O- and early B-type stars passing through the interstellar medium at supersonic vel...
Since the detection of nonthermal radio emission from the bow shock of the massive runaway star BD +...
Runaway stars produce shocks when passing through interstellar medium at supersonic velocities. Bow ...
Runaway stars produce shocks when passing through interstellar medium at supersonic velocities. Bow ...
Runaway stars produce shocks when passing through interstellar medium at supersonic velocities. Bow ...
Context: Runaway stars form bow shocks by ploughing through the interstellar medium at supersonic sp...
At least 5 per cent of the massive stars are moving supersonically through the interstellar medium (...
peer reviewedMassive runaway stars produce bow shocks through the interaction of their winds with th...
Context. Runaway stars form bow shocks by ploughing through the interstellar medium at supersonic sp...
Context. The environs of massive, early-type stars have been inspected in recent years in the search...
International audienceMassive stars that have been ejected from their parent cluster and supersonica...