The VMC survey XXVIII. Improved measurements of the proper motion of the Galactic globular cluster 47 Tucanae
F. Niederhofer, M.-R. L. Cioni, S. Rubele, Th. Schmidt, K. Bekki, R., de Grijs, J. Emerson, V. D. Ivanov, J. M. Oliveira, M. G. Petr-Gotzens, V., Ripepi, N.-C. Sun, J. Th. van Loon

TL;DR
This study uses deep multi-epoch near-infrared VISTA data to precisely measure the proper motion of stars in 47 Tucanae, refining its orbital parameters and demonstrating improved accuracy with longer baselines and PSF photometry.
Contribution
The paper presents improved proper motion measurements of 47 Tuc using VISTA data, demonstrating enhanced accuracy through longer baselines and PSF photometry, and reconstructs the cluster's orbit within the Galaxy.
Findings
Proper motion of 47 Tuc measured with high precision.
Cluster's orbit is confined within the inner 7.5 kpc of the Galaxy.
Method improves accuracy in crowded regions with longer baselines.
Abstract
We use deep multi-epoch PSF photometry taken with the Visible and Infrared Survey Telescope for Astronomy (VISTA) to measure and analyze the proper motions of stars within the Galactic globular cluster 47 Tucanae (47 Tuc, NGC 104). The observations are part of the ongoing near-infrared VISTA survey of the Magellanic Cloud system (VMC). The data analyzed here corresponds to one VMC tile and covers a total sky area of 1.77 deg^2. Absolute proper motions with respect to ~9070 background galaxies are calculated from a linear regression model applied to the stellar positions in 11 epochs in the Ks filter. The data extend over a total time baseline of ~17 months. We found a median proper motion of the stars within 47 Tuc of (mu_a cos(d), mu_d) = (+5.89 +/- 0.02(stat) +/- 0.13(sys), -2.14 +/- 0.02(stat) +/- 0.08(sys)) mas/yr, based on the measurements of ~35000 individual sources between 5'…
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