Proper motions in the VVV Survey: Results for more than 15 million stars across NGC 6544
R. Contreras Ramos, M. Zoccali, F. Rojas, A. Rojas-Arriagada, M., G\'arate, P. Huijse, F. Gran, M. Soto, A.A.R. Valcarce, P. A. Est\'evez, and, D. Minniti

TL;DR
This study utilizes VVV survey data to measure proper motions of over 15 million stars, successfully distinguishing cluster members from field stars, deriving NGC 6544's absolute proper motion, age, metallicity, and orbit, and demonstrating VVV's effectiveness for Galactic structure studies.
Contribution
It introduces a new astrometric reduction method for VVV data, enabling precise proper motion measurements and detailed analysis of NGC 6544 and surrounding stellar populations.
Findings
First proper motion measurement of NGC 6544
Derived cluster age of 11-13 Gyr and [Fe/H] = -1.5 dex
Identified cluster as likely a halo globular cluster
Abstract
Context: In the last six years, the VVV survey mapped 562 sq. deg. across the bulge and southern disk of the Galaxy. However, a detailed study of these regions, which includes globular clusters (GCs) and thousands of open clusters is by no means an easy challenge. High differential reddening and severe crowding along the line of sight makes highly hamper to reliably distinguish stars belonging to different populations and/or systems. Aims: The aim of this study is to separate stars that likely belong to the Galactic GC NGC 6544 from its surrounding field by means of proper motion (PM) techniques. Methods: This work was based upon a new astrometric reduction method optimized for images of the VVV survey. Results: Photometry over the six years baseline of the survey allowed us to obtain a mean precision of mas/yr, in each PM coordinate, for stars with Ks < 15 mag. In…
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