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Related papers: Common origin for Hercules-Aquila and Virgo Clouds…

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Based on a sample of K giant from Large sky Area Multi-Object fiber Spectroscopic Telescope (LAMOST) Data Release 8 and a sample of RR Lyrae (RRL) from \textit{Gaia} Data Release 3, we investigate the compositions of the Hercules-Aquila…

Astrophysics of Galaxies · Physics 2024-07-08 Dashuang Ye , Cuihua Du , Mingji Deng , Jiwei Liao , Yang Huang , Jianrong Shi , Jun Ma

Using elemental abundances for 1.26 million K giants in the LAMOST DR8 value-added catalog, we analyze the chemical abundances of the Virgo Overdensity (VOD) and Hercules-Aquila Cloud (HAC). We find two distinct chemical populations in both…

Astrophysics of Galaxies · Physics 2025-04-03 Haoyang Liu , Cuihua Du , Thomas Donlon , Mingji Deng

In the first billion years after its formation, the Galaxy underwent several mergers with dwarf satellites of various masses. The debris of Gaia-Sausage/Enceladus (GSE), the galaxy responsible for the last significant merger of the Milky…

We suggest that the Virgo Overdensity (VOD) of stars in the stellar halo is the result of a radial dwarf galaxy merger that we call the Virgo Radial Merger. Because the dwarf galaxy passed very near to the Galactic center, the debris has a…

Astrophysics of Galaxies · Physics 2020-01-08 Thomas Donlon , Heidi Jo Newberg , Jake Weiss , Paul Amy , Jeffery Thompson

We use the $Gaia$ DR2 RR Lyrae sample to gain an uninterrupted view of the Galactic stellar halo. We dissect the available volume in slices parallel to the Milky Way's disc to show that within $\sim30$ kpc from the Galactic centre the halo…

Astrophysics of Galaxies · Physics 2018-10-24 G. Iorio , V. Belokurov

We map the large-scale sub-structure in the Galactic stellar halo using accurate 3D positions of ~14,000 RR Lyrae reported by the Catalina Sky Survey. In the heliocentric distance range of 10-25 kpc, in the region of the sky approximately…

Astrophysics of Galaxies · Physics 2014-01-20 Iulia T. Simion , Vasily Belokurov , Mike Irwin , Sergey E. Koposov

We designed a follow-up program to find the spectroscopic properties of the Hercules-Aquila Cloud (HAC) and test scenarios for its formation. We measured the radial velocities (RVs) of 45 RR Lyrae in the southern portion of the HAC using…

Astrophysics of Galaxies · Physics 2018-03-19 Iulia T. Simion , Vasily Belokurov , Sergey E. Koposov , Allyson Sheffield , Kathryn V. Johnston

It has been recently shown that the halo near the Sun contains several kinematic substructures associated to past accretion events. For the more distant halo, there is evidence of large-scale density variations -- in the form of stellar…

Astrophysics of Galaxies · Physics 2021-10-04 E. Balbinot , A. Helmi

Recent observations of the stellar halo have uncovered the debris of an ancient merger, Gaia-Sausage-Enceladus, estimated to have occurred ~8 Gyr ago. Follow-up studies have associated GSE with a large-scale tilt in the stellar halo that…

We use a combination of spatial distribution and radial velocity to search for halo sub-structures in a sample of 412 RR Lyrae stars (RRLS) that covers a $\sim 525$ square degrees region of the Virgo Overdensity (VOD) and spans distances…

Astrophysics of Galaxies · Physics 2016-11-15 A. Katherina Vivas , Robert Zinn , John Farmer , Sonia Duffau , Yiding Ping

Motivated by the vast gap between photometric and spectroscopic data volumes, there is great potential in using 5D kinematic information to identify and study substructures of the Milky Way. We identify substructures in the Galactic halo…

Using a sample of 43 bright (V<16.1, distance <13 kpc) RR Lyrae stars (RRLS) from the QUEST survey with spectroscopic radial velocities and metallicities, we find that several separate halo substructures contribute to the Virgo overdensity…

We present evidence for a substantial overdensity of stars in the direction of the constellations of Hercules and Aquila. The Cloud is centered at a Galactic longitude of about 40 degrees and extends above and below the Galactic plane by at…

Overdensities in the radial phase space $(r,v_r)$ of the Milky Way's halo have previously been associated with the phase-mixed debris of a highly radial merger event, such as Gaia Sausage-Enceladus. We present and test an alternative theory…

Astrophysics of Galaxies · Physics 2024-08-13 Adam M. Dillamore , Vasily Belokurov , N. Wyn Evans

In general, the atypical high velocity of some stars in the Galaxy can only be explained by invoking acceleration mechanisms related to extreme astrophysical events in the Milky Way. Using astrometric data from Gaia and the photometric…

We use the Eighth Data Release of Sloan Digital Sky Survey (SDSS DR8) catalog with its additional sky coverage of the southern Galactic hemisphere, to measure the extent and study the nature of the Virgo Overdensity (VOD; Juric et al.…

We identify shell structures in the Milky Way for the first time. We find 2 shells in the Virgo Overdensity (VOD) region and 2 shells in the Hercules Aquila Cloud (HAC) region using Sloan Digital Sky Survey, Gaia, and LAMOST data. These…

Astrophysics of Galaxies · Physics 2020-10-28 Thomas Donlon , Heidi Jo Newberg , Robyn Sanderson , Lawrence M. Widrow

Based on the \textit{Gaia} DR3 RR Lyrae catalog, we use two methods to fit the density profiles with an improved broken power law, and find that there are two break radii coinciding with the two apocenter pile-ups of high-eccentricity…

Astrophysics of Galaxies · Physics 2023-08-09 Dashuang Ye , Cuihua Du , Jianrong Shi , Jun Ma

The debris from past merger events is expected and, to some extent, known to populate the stellar halo near the Sun. We aim to identify and characterise such merger debris using Gaia DR3 data supplemented by metallicity and chemical…

We identify substructures of the Galactic halo using 3,003 type $ab$ RR Lyraes (RRab) with 6D position-velocity information from the SDSS, LAMOST, and Gaia EDR3. Based on the information, we define the separation of any two of the stars in…

Astrophysics of Galaxies · Physics 2022-06-01 F. Wang , H. -W. Zhang , X. -X. Xue , Y. Huang , G. -C. Liu , L. Zhang , C. -Q. Yang
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