Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Carinae are crucial to characterize the mass-loss history and help constrain the mechanisms leading to the great eruption. We present the 2.4-670 μm spectral energy distribution, constructed from legacy Infrared Space Observatory observations and new spectroscopy obtained with the Herschel Space Observatory. Using radiative transfer modeling, we find that the two best-fit dust models yield compositions that are consistent with CNO-processed material, with iron, pyroxene and other metal-rich silicates, corundum, and magnesium-iron sulfide in common. Spherical corundum grains are supported by the good match to a narrow 20.2 μm feature. Our prefer...
We present models that reproduce the observed double-shell structure of the Homunculus Nebula around...
η Car is one of the most luminous and massive stars in our Galaxy and is the brightest mid-IR source...
This work was supported by the Brazilian agencies CAPES, CNPq, and FAPESP. D.F.G. thanks the Europea...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Ca...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Ca...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable Car...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Ca...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable eta ...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable eta ...
I address uncertainties on the spatial distribution and mass of the dust formed in η Carinae's Homun...
The evolved massive binary star η Carinae underwent eruptive mass-loss events that formed the comple...
The evolved massive binary star η Carinae underwent eruptive mass-loss events that formed the comple...
The evolved massive binary star η Carinae underwent eruptive mass-loss events that formed the comple...
We present models that reproduce the observed double-shell structure of the Homunculus Nebula around...
We present the discovery of an infrared nebula around the Cepheid prototype δ Cephei and its hot com...
We present models that reproduce the observed double-shell structure of the Homunculus Nebula around...
η Car is one of the most luminous and massive stars in our Galaxy and is the brightest mid-IR source...
This work was supported by the Brazilian agencies CAPES, CNPq, and FAPESP. D.F.G. thanks the Europea...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Ca...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Ca...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable Car...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable η Ca...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable eta ...
Infrared observations of the dusty, massive Homunculus Nebula around the luminous blue variable eta ...
I address uncertainties on the spatial distribution and mass of the dust formed in η Carinae's Homun...
The evolved massive binary star η Carinae underwent eruptive mass-loss events that formed the comple...
The evolved massive binary star η Carinae underwent eruptive mass-loss events that formed the comple...
The evolved massive binary star η Carinae underwent eruptive mass-loss events that formed the comple...
We present models that reproduce the observed double-shell structure of the Homunculus Nebula around...
We present the discovery of an infrared nebula around the Cepheid prototype δ Cephei and its hot com...
We present models that reproduce the observed double-shell structure of the Homunculus Nebula around...
η Car is one of the most luminous and massive stars in our Galaxy and is the brightest mid-IR source...
This work was supported by the Brazilian agencies CAPES, CNPq, and FAPESP. D.F.G. thanks the Europea...