We present adaptive optics photometry and spectra in the JHKL bands along with high spectral resolution K-band spectroscopy for each component of the Z Canis Majoris system. Our high angular resolution photometry of this very young (≲1 Myr) binary, comprised of an FU Ori object and a Herbig Ae/Be star, was gathered shortly after the 2008 outburst while our high-resolution spectroscopy was gathered during a quiescent phase. Our photometry conclusively determines that the outburst was due solely to the embedded Herbig Ae/Be member, supporting results from earlier works, and that the optically visible FU Ori component decreased slightly (∼30%) in luminosity during the same period, consistent with previous works on the variability of FU Ori typ...
Context. Accretion is a fundamental process in star formation. Although the time evolution of accre...
We present optical and IR photometry, optical multi-dispersion spectroscopy, and IR spectrophotome...
Aims:The occurrence of new FU Orionis-like objects is fundamental to understand the outburst mechani...
We present adaptive optics photometry and spectra in the JHKL bands along with high spectral resolut...
We present adaptive optics photometry and spectra in the JHKL bands along with high spectral resolut...
International audienceContext. Z CMa is a complex pre-main sequence binary with a current separation...
Context. Z CMa is a complex pre-main sequence binary with a current separation of 110 mas, known to ...
Context. Z CMa is a complex pre-main sequence binary with a current separation of 110 mas, known to ...
Z CMa is a young binary system consisting of an Herbig primary and a FU Ori companion. Both componen...
Context. Z CMa is a binary system which consists of two young stars: a Herbig AeBe component Z CMa...
International audienceContext. Accretion is a fundamental process in star formation. Although the ti...
The Z CMa binary is understood to undergo both FU Orionis (FUOR) and EX Orionis (EXOR) type outburst...
The Z CMa binary is understood to undergo both FU Orionis (FUOR) and EX Orionis (EXOR) type outburst...
Context. Z CMa is a binary composed of an embedded Herbig Be and an FU Ori class star separated by ~...
International audienceThe Z CMa binary is understood to undergo both FU Orionis (FUOR) and EX Orioni...
Context. Accretion is a fundamental process in star formation. Although the time evolution of accre...
We present optical and IR photometry, optical multi-dispersion spectroscopy, and IR spectrophotome...
Aims:The occurrence of new FU Orionis-like objects is fundamental to understand the outburst mechani...
We present adaptive optics photometry and spectra in the JHKL bands along with high spectral resolut...
We present adaptive optics photometry and spectra in the JHKL bands along with high spectral resolut...
International audienceContext. Z CMa is a complex pre-main sequence binary with a current separation...
Context. Z CMa is a complex pre-main sequence binary with a current separation of 110 mas, known to ...
Context. Z CMa is a complex pre-main sequence binary with a current separation of 110 mas, known to ...
Z CMa is a young binary system consisting of an Herbig primary and a FU Ori companion. Both componen...
Context. Z CMa is a binary system which consists of two young stars: a Herbig AeBe component Z CMa...
International audienceContext. Accretion is a fundamental process in star formation. Although the ti...
The Z CMa binary is understood to undergo both FU Orionis (FUOR) and EX Orionis (EXOR) type outburst...
The Z CMa binary is understood to undergo both FU Orionis (FUOR) and EX Orionis (EXOR) type outburst...
Context. Z CMa is a binary composed of an embedded Herbig Be and an FU Ori class star separated by ~...
International audienceThe Z CMa binary is understood to undergo both FU Orionis (FUOR) and EX Orioni...
Context. Accretion is a fundamental process in star formation. Although the time evolution of accre...
We present optical and IR photometry, optical multi-dispersion spectroscopy, and IR spectrophotome...
Aims:The occurrence of new FU Orionis-like objects is fundamental to understand the outburst mechani...