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Discovery of WINERED-HVS1: A metal-rich hyper-velocity star candidate ejected from the Galactic center
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abstract
We report the discovery of a metal-rich red giant star, WINERED-HVS1, which is a candidate for a hyper-velocity star (HVS). Its past trajectory suggests that this star may have been ejected by the Galactic supermassive black hole (SMBH; Sgr A*), with a modest ejection velocity of at least $500\; \mathrm{km\;s^{-1}}$. Since WINERED-HVS1 is gravitationally bound to the Milky Way and is not necessarily young, it is not an unambiguous HVS candidate from a kinematic perspective, unlike the previously confirmed A-type main-sequence HVS known as S5-HVS1. Therefore, the chemical characterization of this star is essential for understanding its origin. Through a spectroscopic follow-up observation with Magellan/WINERED, we determined its metallicity $\mathrm{[Fe/H]}=-0.147^{+0.046}_{-0.045}$, as well as the abundances for Na, Mg, Si, S, K, Ca, Ti, Cr, Ni, and Sr. The high metallicity value suggests that this star was ejected from the Galactic center and is unlikely to be a halo star with a radial orbit. The abundance pattern of this star -- including the pattern of [$\alpha$/Fe], [Mg/Fe], [Si/Mg], and [Ca/Mg] -- is consistent with that of the nuclear star cluster surrounding the SMBH, further supporting our view. This discovery opens a new window to look through the Galactic center environment without the hindrance of dust extinction, by using the HVSs moving in the halo region where dust extinction is minimal.
Forward citations
Cited by 2 Pith papers
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Chemical Abundances in the Milky Way's Nuclear Stellar Disc
The first 18-element chemical census of Nuclear Stellar Disc giants shows abundances matching the nuclear star cluster and inner bulge, with enhanced sodium as the only distinct trend.
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Searching for new Hypervelocity Stars with Gaia DR3 and VLT/FORS2 Spectroscopy
The paper presents 149 new hypervelocity star candidates from Gaia DR3, with follow-up spectroscopy for 23, showing that escape status and orbital origin depend strongly on the assumed Milky Way potential.
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