Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizontal branch. Their formation history is still puzzling as the sdB progenitors must lose nearly all of their hydrogen envelope during the red-giant phase. About half of the known sdBs are in close binaries with periods from 1.2 h to a few days, a fact that implies they experienced a common-envelope phase. Eclipsing hot subdwarf binaries (also called HW Virginis systems) are rare but important objects for determining fundamental stellar parameters. Even more significant and uncommon are those binaries containing a pulsating sdB, as the mass can be determined independently by asteroseismology. Here we present a first analysis of the eclipsing hot ...
Subdwarf B stars are core-helium-burning stars located on the extreme horizontal branch (EHB). Exten...
We announce the discovery of a new eclipsing hot subdwarf B + M dwarf binary, EC 10246-2707, and pr...
Hot subluminous stars of spectral type B and O are core helium-burning stars at the blue end of the ...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
We report the discovery of an eclipsing binary – PTF1 J072456+125301– composed of a subdwarf B (sdB)...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
Subdwarf B (sdB) stars are hot, compact, and evolved objects that form the very hot end of the horiz...
Subdwarf B (sdB) stars are thought to be core helium burning stars with low mass hydrogen envelopes....
‘In these times, during the rise in the popularity of institutional repositories, the Society does n...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
Context. About a third of the hot subdwarfs of spectral type B (sdBs), which are mostly core-helium-...
Hot subdwarf B stars (sdBs) are core helium-burning stars located on the extreme horizontal branch. ...
We present the discovery of EVR-CB-004, a close binary with a remnant stellar core and an unseen whi...
We announce the discovery of a new eclipsing hot subdwarf B + M dwarf binary, EC 10246-2707, and pre...
Subdwarf B stars are core-helium-burning stars located on the extreme horizontal branch (EHB). Exten...
We announce the discovery of a new eclipsing hot subdwarf B + M dwarf binary, EC 10246-2707, and pr...
Hot subluminous stars of spectral type B and O are core helium-burning stars at the blue end of the ...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
Hot subdwarf B stars (sdBs) are evolved, core helium-burning objects located on the extreme horizont...
We report the discovery of an eclipsing binary – PTF1 J072456+125301– composed of a subdwarf B (sdB)...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
Subdwarf B (sdB) stars are hot, compact, and evolved objects that form the very hot end of the horiz...
Subdwarf B (sdB) stars are thought to be core helium burning stars with low mass hydrogen envelopes....
‘In these times, during the rise in the popularity of institutional repositories, the Society does n...
Hot subdwarf B stars (sdBs) are extreme horizontal branch stars believed to originate from close bin...
Context. About a third of the hot subdwarfs of spectral type B (sdBs), which are mostly core-helium-...
Hot subdwarf B stars (sdBs) are core helium-burning stars located on the extreme horizontal branch. ...
We present the discovery of EVR-CB-004, a close binary with a remnant stellar core and an unseen whi...
We announce the discovery of a new eclipsing hot subdwarf B + M dwarf binary, EC 10246-2707, and pre...
Subdwarf B stars are core-helium-burning stars located on the extreme horizontal branch (EHB). Exten...
We announce the discovery of a new eclipsing hot subdwarf B + M dwarf binary, EC 10246-2707, and pr...
Hot subluminous stars of spectral type B and O are core helium-burning stars at the blue end of the ...