We present a new approach for estimating the 3.6 μm stellar mass-to- light (M/L) ratio Υ in terms of the [3.6]-[4.5] colors of old stellar populations. Our approach avoids several of the largest sources of uncertainty in existing techniques using population synthesis models. By focusing on mid-IR wavelengths, we gain a virtually dust extinction-free tracer of the old stars, avoiding the need to adopt a dust model to correctly interpret optical or optical/near-IR colors normally leveraged to assign the mass-to-light ratio Υ. By calibrating a new relation between near-IR and mid-IR colors of giant stars observed in GLIMPSE we also avoid the discrepancies in model predictions for the [3.6]-[4.5] colors of old stellar popu...
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...
Using data from the Wide-field Infrared Survey Explorer mission, we have measured near infra-red (NI...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Υ_3.6 in terms...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
International audienceWe present a new approach for estimating the 3.6 mu m stellar mass-to-light (M...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
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 ratio Υ3.6 in terms of the...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age > 2...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age > 2...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age 2 ...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age > 2...
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 mm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μm IRAC b...
Using data from the Wide-field Infrared Survey Explorer mission, we have measured near infra-red (NI...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Υ_3.6 in terms...
We present a new approach for estimating the 3.6 mu m stellar mass-to-light (M/L) ratio Rho 3.6 in t...
International audienceWe present a new approach for estimating the 3.6 mu m stellar mass-to-light (M...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
We present a new approach for estimating the 3.6 μm stellar mass-to-light (M/L) ratio Upsilon3.6 in ...
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 ratio Υ3.6 in terms of the...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age > 2...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age > 2...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age 2 ...
Stellar population synthesis models can now reproduce the photometry of old stellar systems (age > 2...
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 mm IRAC b...
The mid-infrared is an optimal window to trace stellar mass in nearby galaxies and the 3.6 μm IRAC b...
Using data from the Wide-field Infrared Survey Explorer mission, we have measured near infra-red (NI...