Hot subdwarf B stars (sdBs) in close binary systems are assumed to be formed via common envelope ejection. According to theoretical models, the amount of energy and angular momentum deposited in the common envelope scales with the mass of the companion. That low mass companions near or below the core hydrogen-burning limit are able to trigger the ejection of this envelope is well known. The currently known systems have very short periods ≃0.1–0.3 d. Here we report the discovery of a low mass companion (M2 > 0.14 M⊙) orbiting the sdB star and central star of a planetary nebula EGB 5 with an orbital period of 16.5 d at a minimum separation of 23 R⊙. Its lo...
Hot subdwarf stars of spectral type B (sdBs) are evolved, core helium-burning objects. The formation...
About a third of the hot subdwarfs of spectral type B, which are mostly core-helium burning objects ...
Eclipsing post-common-envelope binaries are highly important for resolving the poorly understood, ve...
Original article can be found at: http://www.aanda.org/ Copyright The European Southern ObservatoryH...
Common envelope (CE) phases in binary systems where the primary star reaches the tip of the red gian...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
Subdwarf B (sdB) stars are thought to be core helium burning stars with low mass hydrogen envelopes....
Hot subdwarf B stars (sdBs) are core helium-burning stars located on the extreme horizontal branch. ...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
A large fraction of the sdB stars reside in short period binaries. It is therefore clear that binary...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
The origin of hot subdwarf B stars (sdBs) is still unclear. About half of the known sdBs are in clo...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
The origin of hot subdwarf B stars (sdBs) is still unclear. About half of the known sdBs are in clos...
The project Massive Unseen Companions to Hot Faint Underluminous Stars from SDSS (MUCHFUSS) aims at ...
Hot subdwarf stars of spectral type B (sdBs) are evolved, core helium-burning objects. The formation...
About a third of the hot subdwarfs of spectral type B, which are mostly core-helium burning objects ...
Eclipsing post-common-envelope binaries are highly important for resolving the poorly understood, ve...
Original article can be found at: http://www.aanda.org/ Copyright The European Southern ObservatoryH...
Common envelope (CE) phases in binary systems where the primary star reaches the tip of the red gian...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
Subdwarf B (sdB) stars are thought to be core helium burning stars with low mass hydrogen envelopes....
Hot subdwarf B stars (sdBs) are core helium-burning stars located on the extreme horizontal branch. ...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
A large fraction of the sdB stars reside in short period binaries. It is therefore clear that binary...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
The origin of hot subdwarf B stars (sdBs) is still unclear. About half of the known sdBs are in clo...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
The origin of hot subdwarf B stars (sdBs) is still unclear. About half of the known sdBs are in clos...
The project Massive Unseen Companions to Hot Faint Underluminous Stars from SDSS (MUCHFUSS) aims at ...
Hot subdwarf stars of spectral type B (sdBs) are evolved, core helium-burning objects. The formation...
About a third of the hot subdwarfs of spectral type B, which are mostly core-helium burning objects ...
Eclipsing post-common-envelope binaries are highly important for resolving the poorly understood, ve...