International audienceThe mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 mm IRAC band has been exploited to this effect, but such mass estimates can be biased by dust emission. We present our pipeline to reveal the old stellar flux at 3.6 mu m and obtain stellar mass maps for more than 1600 galaxies available from the Spitzer Survey of Stellar Structure in Galaxies (S(4)G). This survey consists of images in two infrared bands (3.6 and 4.5 mu m), and we use the Independent Component Analysis (ICA) method presented in Meidt et al. to separate the dominant light from old stars and the dust emission that can significantly contribute to the observed 3.6 mm flux. We exclude from our ICA analysis galaxies wi...
Accepted for publication in ApJSInternational audienceThe Spitzer Survey of Stellar Structure in Gal...
The Spitzer Survey of Stellar Structure in Galaxies (S(4)G) is an Exploration Science Legacy Program...
International audienceWe present a new approach for estimating the 3.6 mu m stellar mass-to-light (M...
International audienceThe mid-infrared is an optimal window to trace stellar mass in nearby galaxies...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 mm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μ {{m}} I...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 mm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6μm IRAC ba...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μ {{m}} I...
International audienceWith the aim of constructing accurate two-dimensional maps of the stellar mass...
With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearb...
With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearb...
The Spitzer Survey of Stellar Structure in Galaxies is a volume, magnitude, and size-limited survey ...
The Spitzer Survey of Stellar Structure in Galaxies is a volume, magnitude, and size-limited survey ...
Accepted for publication in ApJSInternational audienceThe Spitzer Survey of Stellar Structure in Gal...
The Spitzer Survey of Stellar Structure in Galaxies (S(4)G) is an Exploration Science Legacy Program...
International audienceWe present a new approach for estimating the 3.6 mu m stellar mass-to-light (M...
International audienceThe mid-infrared is an optimal window to trace stellar mass in nearby galaxies...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 mm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μ {{m}} I...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 mm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6μm IRAC ba...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μ {{m}} I...
International audienceWith the aim of constructing accurate two-dimensional maps of the stellar mass...
With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearb...
With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearb...
The Spitzer Survey of Stellar Structure in Galaxies is a volume, magnitude, and size-limited survey ...
The Spitzer Survey of Stellar Structure in Galaxies is a volume, magnitude, and size-limited survey ...
Accepted for publication in ApJSInternational audienceThe Spitzer Survey of Stellar Structure in Gal...
The Spitzer Survey of Stellar Structure in Galaxies (S(4)G) is an Exploration Science Legacy Program...
International audienceWe present a new approach for estimating the 3.6 mu m stellar mass-to-light (M...