The wind speeds, dust content, and mass-loss rates of evolved AGB and RSG stars at varying metallicity
Steven R. Goldman, Jacco Th. van Loon, Albert A. Zijlstra, James A., Green, Peter R. Wood, Ambra Nanni, Hiroshi Imai, Patricia A. Whitelock,, Mikako Matsuura, Martin A. T. Groenewegen, and Jos\'e F. G\'omez

TL;DR
This study investigates how metallicity influences wind speeds, dust content, and mass-loss rates in evolved AGB and RSG stars, revealing that mass loss is nearly independent of metallicity and providing a new empirical mass loss prescription.
Contribution
It introduces an updated relation for dust-driven wind speeds, models gas-to-dust ratios, and derives a new mass loss formula considering luminosity, pulsation period, and gas-to-dust ratio.
Findings
Wind speed scales with metallicity and luminosity.
Mass loss rate correlates strongly with luminosity.
Gas-to-dust ratio has minimal impact on mass loss.
Abstract
We present the results of our survey of 1612 MHz circumstellar OH maser emission from asymptotic giant branch (AGB) stars and red supergiants (RSGs) in the Large Magellanic Cloud. We have discovered four new circumstellar maser sources in the LMC, and increased the number of reliable wind speeds from IR stars in the LMC from 5 to 13. Using our new wind speeds, as well as those from Galactic sources, we have derived an updated relation for dust driven winds: . We compare the sub-solar metallicity LMC OH/IR stars with carefully selected samples of more metal-rich OH/IR stars, also at known distances, in the Galactic Centre and Galactic Bulge. For 8 of the Bulge stars we derive pulsation periods for the first time, using near-IR photometry from the VVV survey. We have modeled our LMC OH/IR stars and developed an empirical method of deriving gas-to-dust ratios and…
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