Milky Way archaeology using RR Lyrae and type II Cepheids II. High velocity RR Lyrae stars, and mass of the Milky Way
Z. Prudil, A. J Koch-Hansen, B. Lemasle, E. K. Grebel, T. Marchetti,, C. J. Hansen, J. Crestani, V. F. Braga, G. Bono, B. Chaboyer, M. Fabrizio, M., Dall'Ora, C. E. Mart\'inez-V\'azquez

TL;DR
This study identifies high-velocity RR Lyrae stars in the Milky Way halo, estimates the Galaxy's escape velocity and mass, and links some stars to the Sagittarius stream, refining our understanding of the Milky Way's gravitational potential.
Contribution
The paper provides new measurements of the Milky Way's escape velocity and mass using high-velocity RR Lyrae stars, including corrections for biases, and explores their association with the Sagittarius stream.
Findings
Nine RR Lyrae stars exceed local escape velocity.
Estimated Milky Way mass within 20 kpc is about 2.1 x 10^{11} solar masses.
Escape velocity estimates are around 436-512 km/s depending on location.
Abstract
We report the discovery of high velocity candidates among RR~Lyrae stars found in the Milky Way halo. We identified 9 RR~Lyrae stars with Galactocentric velocities exceeding the local escape velocity based on the assumed Galaxy potential. Based on close examination of their orbits', we ruled out their ejection location in the Milky Way disk and bulge. The spatial distribution revealed that seven out of 9 pulsators overlap with the position of the Sagittarius stellar stream. Two out of these seven RR~Lyrae stars can be tentatively linked to the Sagittarius dwarf spheroidal galaxy on the basis of their orbits. Focusing on the high-velocity tail of the RR~Lyrae velocity distribution we estimate the escape velocity in the Solar neighborhood to be \,km\,s~( to \,kpc), and beyond the Solar neighborhood as $v_{\rm…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Space Science and Extraterrestrial Life
