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Publications (6 of 6) Show all publications
Ibata, R., Malhan, K., Martin, N., Aubert, D., Famaey, B., Bianchini, P., . . . Renaud, F. (2021). Charting the Galactic Acceleration Field. I. A Search for Stellar Streams with Gaia DR2 and EDR3 with Follow-up from ESPaDOnS and UVES. Astrophysical Journal, 914(2), Article ID 123.
Open this publication in new window or tab >>Charting the Galactic Acceleration Field. I. A Search for Stellar Streams with Gaia DR2 and EDR3 with Follow-up from ESPaDOnS and UVES
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2021 (English)In: Astrophysical Journal, ISSN 0004-637X, E-ISSN 1538-4357, Vol. 914, no 2, article id 123Article in journal (Refereed) Published
Abstract [en]

We present maps of the stellar streams detected in the Gaia Data Release 2 (DR2) and Early Data Release 3 (EDR3) catalogs using the STREAMFINDER algorithm. We also report the spectroscopic follow-up of the brighter DR2 stream members obtained with the high-resolution CFHT/ESPaDOnS and VLT/UVES spectrographs as well as with the medium-resolution NTT/EFOSC2 spectrograph. Two new stellar streams that do not have a clear progenitor are detected in DR2 (named Hrid and Gunnthra), and seven are detected in EDR3 (named Gaia-6 to Gaia-12). Several candidate streams are also identified. The software also finds very long tidal tails associated with the 15 globular clusters: NGC 288, NGC 1261, NGC 1851, NGC 2298, NGC 2808, NGC 3201, M68, omega Cen, NGC 5466, Palomar 5, M5, NGC 6101, M92, NGC 6397, and NGC 7089. These stellar streams will be used in subsequent contributions in this series to chart the properties of the Galactic acceleration field on similar to 100 pc to similar to 100 kpc scales.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-196265 (URN)10.3847/1538-4357/abfcc2 (DOI)000664728900001 ()
Available from: 2021-09-06 Created: 2021-09-06 Last updated: 2022-11-10Bibliographically approved
Malhan, K., Yuan, Z., Ibata, R. A., Arentsen, A., Bellazzini, M. & Martin, N. F. (2021). Evidence of a Dwarf Galaxy Stream Populating the Inner Milky Way Halo. Astrophysical Journal, 920(1), Article ID 51.
Open this publication in new window or tab >>Evidence of a Dwarf Galaxy Stream Populating the Inner Milky Way Halo
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2021 (English)In: Astrophysical Journal, ISSN 0004-637X, E-ISSN 1538-4357, Vol. 920, no 1, article id 51Article in journal (Refereed) Published
Abstract [en]

Stellar streams produced from dwarf galaxies provide direct evidence of the hierarchical formation of the Milky Way. Here, we present the first comprehensive study of the LMS-1 stellar stream, that we detect by searching for wide streams in the Gaia EDR3 data set using the STREAMFINDER algorithm. This stream was recently discovered by Yuan et al. We detect LMS-1 as a 60° long stream to the north of the galactic bulge, at a distance of ∼20 kpc from the Sun, together with additional components that suggest that the overall stream is completely wrapped around the inner Galaxy. Using spectroscopic measurements from the Large Sky Area Multi-Object Fiber Spectroscopic Telescope, the Sloan Digital Sky Survey, and the Apache Point Observatory Galactic Evolution Experiment, we infer that the stream is very metal-poor (〈[Fe/H]〉 = −2.1) with a significant metallicity dispersion (σ[Fe/H] = 0.4), and it possesses a large radial velocity dispersion (σv = 20 ± 4 km s−1). These estimates together imply that LMS-1 is a dwarf galaxy stream. The orbit of LMS-1 is close to polar, with an inclination of 75° to the galactic plane. Both the orbit and metallicity of LMS-1 are remarkably similar to the globular clusters NGC 5053, NGC 5024, and the stellar stream Indus. These findings make LMS-1 an important contributor to the stellar population of the inner Milky Way halo.

Keywords
: Milky Way stellar halo, Stellar streams, Milky Way formation, Surveys, Galaxy stellar content, Galaxy structure
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-198559 (URN)10.3847/1538-4357/ac1675 (DOI)000706464200001 ()2-s2.0-85117718571 (Scopus ID)
Available from: 2021-11-11 Created: 2021-11-11 Last updated: 2022-11-10Bibliographically approved
Kielty, C. L., Venn, K. A., Sestito, F., Starkenburg, E., Martin, N. F., Aguado, D. S., . . . Sánchez-Janssen, R. (2021). The Pristine survey - XII. Gemini-GRACES chemo-dynamical study of newly discovered extremely metal-poor stars in the Galaxy. Monthly notices of the Royal Astronomical Society, 506(1), 1438-1461
Open this publication in new window or tab >>The Pristine survey - XII. Gemini-GRACES chemo-dynamical study of newly discovered extremely metal-poor stars in the Galaxy
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2021 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 506, no 1, p. 1438-1461Article in journal (Refereed) Published
Abstract [en]

High-resolution optical spectra of 30 metal-poor stars selected from the Pristine survey are presented, based on observations taken with the Gemini Observatory GRACES spectrograph. Stellar parameters Teff and log g are determined using a Gaia DR2 colour–temperature calibration and surface gravity from the Stefan–Boltzmann equation. GRACES spectra are used to determine chemical abundances (or upper limits) for 20 elements (Li, O, Na, Mg, K, Ca, Ti, Sc, Cr, Mn, Fe, Ni, Cu, Zn, Y, Zr, Ba, La, Nd, Eu). These stars are confirmed to be metal-poor ([Fe/H] < −2.5), with higher precision than from earlier medium-resolution analyses. The chemistry for most targets is similar to other extremely metal-poor stars in the Galactic halo. Three stars near [Fe/H] = −3.0 have unusually low Ca and high Mg, suggestive of contributions from few SN II where alpha-element formation through hydrostatic nucleosynthesis was more efficient. Three new carbon-enhanced metal-poor (CEMP) stars are also identified (two CEMP-s and one potential CEMP-no star) when our chemical abundances are combined with carbon from previous medium-resolution analyses. The GRACES spectra also provide precision radial velocities (σRV ≤ 0.2 km s−1) for dynamical orbit calculations with the Gaia DR2 proper motions. Most of our targets are dynamically associated with the Galactic halo; however, five stars with [Fe/H] < −3 have planar-like orbits, including one retrograde star. Another five stars are dynamically consistent with the Gaia-Sequoia accretion event; three have typical halo [α/Fe] ratios for their metallicities, whereas two are [Mg/Fe]-deficient, and one is a new CEMP-s candidate. These results are discussed in terms of the formation and early chemical evolution of the Galaxy.

Keywords
nuclear reactions, nucleosynthesis, abundances, Galaxy: formation, stars: Population II
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-199127 (URN)10.1093/mnras/stab1783 (DOI)000703918800095 ()
Available from: 2021-12-09 Created: 2021-12-09 Last updated: 2022-02-25Bibliographically approved
Jensen, J., Thomas, G., McConnachie, A. W., Starkenburg, E., Malhan, K., Navarro, J., . . . Gwyn, S. (2021). Uncovering fossils of the distant Milky Way with UNIONS: NGC 5466 and its stellar stream. Monthly notices of the Royal Astronomical Society, 507(2), 1923-1936
Open this publication in new window or tab >>Uncovering fossils of the distant Milky Way with UNIONS: NGC 5466 and its stellar stream
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2021 (English)In: Monthly notices of the Royal Astronomical Society, ISSN 0035-8711, E-ISSN 1365-2966, Vol. 507, no 2, p. 1923-1936Article in journal (Refereed) Published
Abstract [en]

We examine the spatial clustering of blue horizontal branch (BHB) stars from the u-band of the Canada-France Imaging Survey (CFIS, a component of the Ultraviolet Near-Infrared Optical Northern Survey, or UNIONS). All major groupings of stars are associated with previously known satellites, and among these is NGC 5466, a distant (16 kpc) globular cluster. NGC 5466 reportedly possesses a long stellar stream, although no individual members of the stream have previously been identified. Using both BHBs and more numerous red giant branch stars cross-matched to Gaia Data Release 2, we identify extended tidal tails from NGC 5466 that are both spatially and kinematically coherent. Interestingly, we find that this stream does not follow the same path as the previous detection at large distances from the cluster. We trace the stream across 31° of sky and show that it exhibits a very strong distance gradient in the range 10 < Rhelio < 30 kpc. We compare our observations to simple dynamical models of the stream and find that they are able to broadly reproduce the overall path and kinematics. The fact that NGC 5466 is so distant, traces a wide range of Galactic distances, has an identified progenitor, and appears to have recently had an interaction with the Galaxy's disc makes it a unique test-case for dynamical modelling of the Milky Way.

Keywords
globular clusters: individual: NGC 5466, Galaxy: halo, Galaxy: kinematics and dynamics, Galaxy: structure
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-198570 (URN)10.1093/mnras/stab2325 (DOI)000697380800025 ()2-s2.0-85116574140 (Scopus ID)
Available from: 2021-11-11 Created: 2021-11-11 Last updated: 2022-11-11Bibliographically approved
Ibata, R., Bellazzini, M., Thomas, G., Malhan, K., Martin, N., Famaey, B. & Siebert, A. (2020). A Panoramic Landscape of the Sagittarius Stream in Gaia DR2 Revealed with the STREAMFINDER Spyglass. Astrophysical Journal Letters, 891(1), Article ID L19.
Open this publication in new window or tab >>A Panoramic Landscape of the Sagittarius Stream in Gaia DR2 Revealed with the STREAMFINDER Spyglass
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2020 (English)In: Astrophysical Journal Letters, ISSN 2041-8205, E-ISSN 2041-8213, Vol. 891, no 1, article id L19Article in journal (Refereed) Published
Abstract [en]

We present the first full six-dimensional panoramic portrait of the Sagittarius stream, obtained by searching for wide stellar streams in the Gaia DR2 data set with the STREAMFINDER algorithm. We use the kinematic behavior of the sample to devise a selection of Gaia RR Lyrae, providing excellent distance measurements along the stream. The proper motion data are complemented with radial velocities from public surveys. We find that the global morphological and kinematic properties of the Sagittarius stream are still reasonably well reproduced by the simple Law & Majewski model (LM10), although the model overestimates the leading arm and trailing arm distances by up to similar to 15%. The sample newly reveals the leading arm of the Sagittarius stream as it passes into very crowded regions of the Galactic disk toward the Galactic anticenter direction. Fortuitously, this part of the stream is almost exactly at the diametrically opposite location from the Galactic center to the progenitor, which should allow an assessment of the influence of dynamical friction and self-gravity in a way that is nearly independent of the underlying Galactic potential model.

Keywords
Dwarf galaxies, Milky Way Galaxy, Local Group, Milky Way dynamics
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-180636 (URN)10.3847/2041-8213/ab77c7 (DOI)000518655700001 ()2-s2.0-85086374982 (Scopus ID)
Available from: 2020-04-18 Created: 2020-04-18 Last updated: 2022-11-07Bibliographically approved
Ibata, R., Thomas, G., Famaey, B., Malhan, K., Martin, N. & Monari, G. (2020). Detection of Strong Epicyclic Density Spikes in the GD-1 Stellar Stream: An Absence of Evidence for the Influence of Dark Matter Subhalos?. Astrophysical Journal, 891(2), Article ID 161.
Open this publication in new window or tab >>Detection of Strong Epicyclic Density Spikes in the GD-1 Stellar Stream: An Absence of Evidence for the Influence of Dark Matter Subhalos?
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2020 (English)In: Astrophysical Journal, ISSN 0004-637X, E-ISSN 1538-4357, Vol. 891, no 2, article id 161Article in journal (Refereed) Published
Abstract [en]

The density variations in thin stellar streams may encode important information on the nature of dark matter. For instance, if dark matter aggregates into massive subhalos, these perturbers are expected to scatter stars out of dynamically cold stellar streams, possibly leading to detectable gaps in those structures. Here, we reexamine the density variations in the GD-1 stream, using Gaia Data Release 2 (DR2) astrometry and Panoramic Survey Telescope and Rapid Response System photometry, together with high-precision radial velocities measured with the Canada-France-Hawaii Telescope/ESPaDOnS and Very Large Telescope/Ultraviolet and Visual Echelle Spectrograph instruments and complemented with public radial velocity catalogs. We show that after correcting for projection effects, the density profile exhibits high contrast periodic peaks, separated by 2.64 0.18 kpc. An N-body simulation is presented that reproduces this striking morphology with simple epicyclic motion in a smooth Galactic potential. We also discuss the reliability of measuring density variations using ground-based photometric surveys, and for the particular case of GD-1 we highlight some of the artifacts present in the Gaia DR2 catalog along its track. Massive dark subhalos do not appear to be required to explain the density clumping along GD-1.

Keywords
Milky Way dynamics, Stellar dynamics, Hydrodynamics, Milky Way Galaxy, Milky Way dark matter halo, Dark matter
National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-181403 (URN)10.3847/1538-4357/ab7303 (DOI)000521380300001 ()2-s2.0-85084038627 (Scopus ID)
Available from: 2020-05-05 Created: 2020-05-05 Last updated: 2022-11-08Bibliographically approved
Identifiers
ORCID iD: ORCID iD iconorcid.org/0000-0002-1349-202x

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