A Radio Census of the Massive Stellar Cluster Westerlund 1
H. Andrews, D. Fenech, R. K. Prinja, J. S. Clark, and L. Hindson

TL;DR
This study uses radio observations to measure fluxes and mass-loss rates of massive stars in Westerlund 1, revealing new stellar detections, binary candidates, and complex intra-cluster medium structures.
Contribution
First detailed radio survey of Westerlund 1's massive stars, providing new detections, mass-loss estimates, and insights into cluster wind structures.
Findings
Detected 30 radio sources, including new OB supergiant and WR star detections.
Derived mass-loss rates and spectral indices for several massive stars.
Identified clumped intra-cluster medium and potential binary systems.
Abstract
Massive stars and their stellar winds are important for a number of feedback processes. The mass lost in the stellar wind can help determine the end-point of the star as a NS or a BH. However, the impact of mass-loss on the post-Main Sequence evolutionary stage of massive stars is not well understood. Westerlund 1 is an ideal astrophysical laboratory in which to study massive stars and their winds in great detail over a large range of different evolutionary phases. Aims: We aim to study the radio emission from Westerlund 1, in order to measure radio fluxes from the population of massive stars, and determine mass-loss rates and spectral indices where possible. Methods: Observations were carried out in 2015 and 2016 with the Australia telescope compact array (ATCA) at 5.5 and 9 GHz using multiple configurations, with maximum baselines ranging from 750m to 6km. Results: 30 stars were…
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