With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearby galaxies from Spitzer Survey of Stellar Structure in Galaxies 3.6 and 4.5 μm images, we report on the separation of the light from old stars from the emission contributed by contaminants. Results for a small sample of six disk galaxies (NGC 1566, NGC 2976, NGC 3031, NGC 3184, NGC 4321, and NGC 5194) with a range of morphological properties, dust content, and star formation histories are presented to demonstrate our approach. To isolate the old stellar light from contaminant emission (e.g., hot dust and the 3.3 μm polycyclic aromatic hydrocarbon (PAH) feature) in the IRAC 3.6 and 4.5 μm bands we use an independent component analysis (ICA) te...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6μm IRAC ba...
With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearb...
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...
With the aim of constructing accurate 2D maps of the stellar mass distribution in nearby galaxies fr...
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...
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 μ {{m}} I...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
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...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6μm IRAC ba...
With the aim of constructing accurate two-dimensional maps of the stellar mass distribution in nearb...
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...
With the aim of constructing accurate 2D maps of the stellar mass distribution in nearby galaxies fr...
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...
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 μ {{m}} I...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
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...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6μm IRAC ba...