V582 Aur is an FU Ori-type young eruptive star in outburst since ̃1985. The eruption is currently in a relatively constant plateau phase, with photometric and spectroscopic variability superimposed. Here we will characterize the progenitor of the outbursting object, explore its environment, and analyze the temporal evolution of the eruption. We are particularly interested in the physical origin of the two deep photometric dips, one that occurred in 2012 and one that is ongoing since 2016. We collected archival photographic plates and carried out new optical, infrared, and millimeter-wave photometric and spectroscopic observations between 2010 and 2018, with a high sampling rate during the current minimum. Besides analyzing the color changes...
Decades after the beginning of its FU Orionis-type outburst, V346 Nor unexpectedly underwent a fadin...
Context. V2492 Cyg is a young eruptive star that went into outburst in 2010. The near-infrared color...
We monitored the recent FUor 2MASS J06593158-0405277 (V960 Mon) since November 2009 at various obser...
V582 Aur is an FU Ori-type young eruptive star in outburst since similar to 1985. The eruption is cu...
The early evolution of Sun-like stars may be interspersed by energetic FU Orionis (FUor) type accret...
V582 Aur is a pre-main-sequence FU Orionis type eruptive star, which entered a brightness minimum in...
V582 Aur is a pre-main-sequence FU Orionis type eruptive star, which entered a brightness minimum in...
International audience Aims: We present results from optical photometric and spectroscopic observati...
FU Orionis-type objects (FUors) are young low-mass stars undergoing powerful accretion outbursts. Th...
Context. V1184 Tau is a young variable that for a long time has been monitored at optical wavelength...
Aims:The occurrence of new FU Orionis-like objects is fundamental to understand the outburst mechani...
Context. The sudden optical brightening of two young stellar objects, HBC 722 and VSX J205126.1+4405...
ArticleDuring their formation phase stars gain most of their mass in violent episodic accretion even...
Context. It is hypothesized that low-mass young stellar objects undergo eruptive phases during their...
Context. It is hypothesized that low-mass young stellar objects undergo eruptive phases during their...
Decades after the beginning of its FU Orionis-type outburst, V346 Nor unexpectedly underwent a fadin...
Context. V2492 Cyg is a young eruptive star that went into outburst in 2010. The near-infrared color...
We monitored the recent FUor 2MASS J06593158-0405277 (V960 Mon) since November 2009 at various obser...
V582 Aur is an FU Ori-type young eruptive star in outburst since similar to 1985. The eruption is cu...
The early evolution of Sun-like stars may be interspersed by energetic FU Orionis (FUor) type accret...
V582 Aur is a pre-main-sequence FU Orionis type eruptive star, which entered a brightness minimum in...
V582 Aur is a pre-main-sequence FU Orionis type eruptive star, which entered a brightness minimum in...
International audience Aims: We present results from optical photometric and spectroscopic observati...
FU Orionis-type objects (FUors) are young low-mass stars undergoing powerful accretion outbursts. Th...
Context. V1184 Tau is a young variable that for a long time has been monitored at optical wavelength...
Aims:The occurrence of new FU Orionis-like objects is fundamental to understand the outburst mechani...
Context. The sudden optical brightening of two young stellar objects, HBC 722 and VSX J205126.1+4405...
ArticleDuring their formation phase stars gain most of their mass in violent episodic accretion even...
Context. It is hypothesized that low-mass young stellar objects undergo eruptive phases during their...
Context. It is hypothesized that low-mass young stellar objects undergo eruptive phases during their...
Decades after the beginning of its FU Orionis-type outburst, V346 Nor unexpectedly underwent a fadin...
Context. V2492 Cyg is a young eruptive star that went into outburst in 2010. The near-infrared color...
We monitored the recent FUor 2MASS J06593158-0405277 (V960 Mon) since November 2009 at various obser...