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Related papers: Gaia-DR2 extended kinematical maps. Part I: Method…

200 papers

AIMS. We calculate the stellar density using star counts obtained from Gaia DR2 up to a Galactocentric distance R=20 kpc with a deconvolution technique for the parallax errors. Then we analyse the density in order to study the structure of…

Astrophysics of Galaxies · Physics 2020-05-27 Z. Chrobakova , R. Nagy , M. Lopez-Corredoira

We investigate the nature of nearby (10-15 kpc) high-speed stars in the Gaia DR2 archive identified on the basis of parallax, proper motion and radial velocity. Together with a consideration of their kinematic, orbital, and photometric…

Astrophysics of Galaxies · Physics 2018-11-28 Benjamin C. Bromley , Scott J. Kenyon , Warren R. Brown , Margaret J. Geller

The third data release (DR3) of Gaia has provided a five-fold increase in the number of radial velocity measurements of stars, as well as a stark improvement in parallax and proper motion measurements. To help with studies that seek to test…

Astrophysics of Galaxies · Physics 2023-07-19 Tri Nguyen , Xiaowei Ou , Nondh Panithanpaisal , Nora Shipp , Lina Necib , Robyn Sanderson , Andrew Wetzel

The kinematic plane of stars near the Sun has proven an indispensable tool for untangling the complexities of the structure of our Milky Way (MW). With ever improving data, numerous kinematic "moving groups" of stars have been better…

Astrophysics of Galaxies · Physics 2023-01-18 Scott Lucchini , Emil Pellett , Elena D'Onghia , J. Alfonso L. Aguerri

The systematic offset of Gaia parallaxes has been widely reported with Gaia's second data release, and it is expected to persist in future Gaia data. In order to use Gaia parallaxes to infer distances to high precision, we develop a…

Solar and Stellar Astrophysics · Physics 2020-03-24 Victor C. Chan , Jo Bovy

Gaia Data Release 2 (Gaia DR2) provides high accuracy and precision astrometric parameters (position, parallax, and proper motion) for more than 1 billion sources and is revolutionizing astrometry. For a fast-moving target such as an…

Instrumentation and Methods for Astrophysics · Physics 2021-08-25 Z. J. Zheng , Q. Y. Peng , F. R. Lin

We have applied our method for weighing the Galactic disk using phase-space spirals to the Gaia EDR3 proper motion sample. For stars in distant regions of the Galactic disk, the latitudinal proper motion has a close projection with vertical…

Astrophysics of Galaxies · Physics 2022-07-06 Axel Widmark , Chervin F. P. Laporte , Giacomo Monari

We provide a purely dynamical global map of the non-axisymmetric structure of the Milky Way disk. For this, we exploit the information contained within the in-plane motions of disk stars from Gaia DR3 to adjust a model of the Galactic…

Astrophysics of Galaxies · Physics 2025-07-16 Y. R. Khalil , B. Famaey , G. Monari , M. Bernet , A. Siebert , R. Ibata , G. F. Thomas , P. Ramos , T. Antoja , C. Li , S. Rozier , M. Romero-Gómez

The Milky Way (MW) hosts a central bar whose pattern speed, orientation, and length remain uncertain, largely due to observational biases and selection effects, despite the transformative data provided by the Gaia mission. We aim to…

Errors in the kinematic distances, under the assumption of circular gas orbits, were estimated by performing synthetic observations of a model disk galaxy. It was found that the error is < 0.5 kpc for most of the disk when the measured…

Astrophysics · Physics 2008-11-26 Gilberto C. Gomez

Gaia will provide parallaxes and proper motions with accuracy ranging from 10 to 1000 microarcsecond on up to one billion stars. Most of these will be disk stars: for an unreddened K giant at 6 kpc, it will measure the distance accurate to…

Astrophysics · Physics 2015-05-13 C. A. L. Bailer-Jones

Context. Gaia Early Data Release 3 (Gaia EDR3) provides accurate astrometry for about 1.6 million compact (QSO-like) extragalactic sources, 1.2 million of which have the best-quality five-parameter astrometric solutions. Aims. The proper…

Astrophysics of Galaxies · Physics 2021-04-28 Gaia Collaboration , S. A. Klioner , F. Mignard , L. Lindegren , U. Bastian , P. J. McMillan , J. Hernández , D. Hobbs , M. Ramos-Lerate , M. Biermann , A. Bombrun , A. de Torres , E. Gerlach , R. Geyer , T. Hilger , U. Lammers , H. Steidelmüller , C. A. Stephenson , A. G. A. Brown , A. Vallenari , T. Prusti , J. H. J. de Bruijne , C. Babusiaux , O. L. Creevey , D. W. Evans , L. Eyer , A. Hutton , F. Jansen , C. Jordi , X. Luri , C. Panem , D. Pourbaix , S. Randich , P. Sartoretti , C. Soubiran , N. A. Walton , F. Arenou , C. A. L. Bailer-Jones , M. Cropper , R. Drimmel , D. Katz , M. G. Lattanzi , F. van Leeuwen , J. Bakker , J. Castañeda , F. De Angeli , C. Ducourant , C. Fabricius , M. Fouesneau , Y. Frémat , R. Guerra , A. Guerrier , J. Guiraud , A. Jean-Antoine Piccolo , E. Masana , R. Messineo , N. Mowlavi , C. Nicolas , K. Nienartowicz , F. Pailler , P. Panuzzo , F. Riclet , W. Roux , G. M. Seabroke , R. Sordo , P. Tanga , F. Thévenin , G. Gracia-Abril , J. Portell , D. Teyssier , M. Altmann , R. Andrae , I. Bellas-Velidis , K. Benson , J. Berthier , R. Blomme , E. Brugaletta , P. W. Burgess , G. Busso , B. Carry , A. Cellino , N. Cheek , G. Clementini , Y. Damerdji , M. Davidson , L. Delchambre , A. Dell'Oro , J. Fernández-Hernández , L. Galluccio , P. García-Lario , M. Garcia-Reinaldos , J. González-Núñez , E. Gosset , R. Haigron , J. -L. Halbwachs , N. C. Hambly , D. L. Harrison , D. Hatzidimitriou , U. Heiter , D. Hestroffer , S. T. Hodgkin , B. Holl , K. Janßen , G. Jevardat de Fombelle , S. Jordan , A. Krone-Martins , A. C. Lanzafame , W. Löffler , A. Lorca , M. Manteiga , O. Marchal , P. M. Marrese , A. Moitinho , A. Mora , K. Muinonen , P. Osborne , E. Pancino , T. Pauwels , A. Recio-Blanco , P. J. Richards , M. Riello , L. Rimoldini , A. C. Robin , T. Roegiers , J. Rybizki , L. M. Sarro , C. Siopis , M. Smith , A. Sozzetti , A. Ulla , E. Utrilla , M. van Leeuwen , W. van Reeven , U. Abbas , A. Abreu Aramburu , S. Accart , C. Aerts , J. J. Aguado , M. Ajaj , G. Altavilla , M. A. Álvarez , J. Álvarez Cid-Fuentes , J. Alves , R. I. Anderson , E. Anglada Varela , T. Antoja , M. Audard , D. Baines , S. G. Baker , L. Balaguer-Nú\-nez , E. Balbinot , Z. Balog , C. Barache , D. Barbato , M. Barros , M. A. Barstow , S. Bartolomé , J. -L. Bassilana , N. Bauchet , A. Baudesson-Stella , U. Becciani , M. Bellazzini , M. Bernet , S. Bertone , L. Bianchi , S. Blanco-Cuaresma , T. Boch , D. Bossini , S. Bouquillon , L. Bramante , E. Breedt , A. Bressan , N. Brouillet , B. Bucciarelli , A. Burlacu , D. Busonero , A. G. Butkevich , R. Buzzi , E. Caffau , R. Cancelliere , H. Cánovas , T. Cantat-Gaudin , R. Carballo , T. Carlucci , M. I Carnerero , J. M. Carrasco , L. Casamiquela , M. Castellani , A. Castro-Ginard , P. Castro Sampol , L. Chaoul , P. Charlot , L. Chemin , A. Chiavassa , G. Comoretto , W. J. Cooper , T. Cornez , S. Cowell , F. Crifo , M. Crosta , C. Crowley , C. Dafonte , A. Dapergolas , M. David , P. David , P. de Laverny , F. De Luise , R. De March , J. De Ridder , R. de Souza , P. de Teodoro , E. F. del Peloso , E. del Pozo , A. Delgado , H. E. Delgado , J. -B. Delisle , P. Di Matteo , S. Diakite , C. Diener , E. Distefano , C. Dolding , D. Eappachen , H. Enke , P. Esquej , C. Fabre , M. Fabrizio , S. Faigler , G. Fedorets , P. Fernique , A. Fienga , F. Figueras , C. Fouron , F. Fragkoudi , E. Fraile , F. Franke , M. Gai , D. Garabato , A. Garcia-Gutierrez , M. García-Torres , A. Garofalo , P. Gavras , P. Giacobbe , G. Gilmore , S. Girona , G. Giuffrida , A. Gomez , I. Gonzalez-Santamaria , J. J. González-Vidal , M. Granvik , R. Gutiérrez-Sánchez , L. P. Guy , M. Hauser , M. Haywood , A. Helmi , S. L. Hidalgo , N. Hładczuk , G. Holland , H. E. Huckle , G. Jasniewicz , P. G. Jonker , J. Juaristi Campillo , F. Julbe , L. Karbevska , P. Kervella , S. Khanna , A. Kochoska , G. Kordopatis , A. J. Korn , Z. Kostrzewa-Rutkowska , K. Kruszyńska , S. Lambert , A. F. Lanza , Y. Lasne , J. -F. Le Campion , Y. Le Fustec , Y. Lebreton , T. Lebzelter , S. Leccia , N. Leclerc , I. Lecoeur-Taibi , S. Liao , E. Licata , H. E. P. Lindstrøm , T. A. Lister , E. Livanou , A. Lobel , P. Madrero Pardo , S. Managau , R. G. Mann , J. M. Marchant , M. Marconi , M. M. S. Marcos Santos , S. Marinoni , F. Marocco , D. J. Marshall , L. Martin Polo , J. M. Martín-Fleitas , A. Masip , D. Massari , A. Mastrobuono-Battisti , T. Mazeh , S. Messina , D. Michalik , N. R. Millar , A. Mints , D. Molina , R. Molinaro , L. Molnár , P. Montegriffo , R. Mor , R. Morbidelli , T. Morel , D. Morris , A. F. Mulone , D. Munoz , T. Muraveva , C. P. Murphy , I. Musella , L. Noval , C. Ordénovic , G. Orrù , J. Osinde , C. Pagani , I. Pagano , L. Palaversa , P. A. Palicio , A. Panahi , M. Pawlak , X. Pe\-nalosa Esteller , A. Penttilä , A. M. Piersimoni , F. -X. Pineau , E. Plachy , G. Plum , E. Poggio , E. Poretti , E. Poujoulet , A. Prša , L. Pulone , E. Racero , S. Ragaini , M. Rainer , C. M. Raiteri , N. Rambaux , P. Ramos , P. Re Fiorentin , S. Regibo , C. Reylé , V. Ripepi , A. Riva , G. Rixon , N. Robichon , C. Robin , M. Roelens , L. Rohrbasser , M. Romero-Gómez , N. Rowell , F. Royer , K. A. Rybicki , G. Sadowski , A. Sagristà Sellés , J. Sahlmann , J. Salgado , E. Salguero , N. Samaras , V. Sanchez Gimenez , N. Sanna , R. Santoveña , M. Sarasso , M. Schultheis , E. Sciacca , M. Segol , J. C. Segovia , D. Ségransan , D. Semeux , H. I. Siddiqui , A. Siebert , L. Siltala , E. Slezak , R. L. Smart , E. Solano , F. Solitro , D. Souami , J. Souchay , A. Spagna , F. Spoto , I. A. Steele , M. Süveges , L. Szabados , E. Szegedi-Elek , F. Taris , G. Tauran , M. B. Taylor , R. Teixeira , W. Thuillot , N. Tonello , F. Torra , J. Torray , C. Turon , N. Unger , M. Vaillant , E. van Dillen , O. Vanel , A. Vecchiato , Y. Viala , D. Vicente , S. Voutsinas , M. Weiler , T. Wevers , Ł. Wyrzykowski , A. Yoldas , P. Yvard , H. Zhao , J. Zorec , S. Zucker , C. Zurbach , T. Zwitter

We determine the total dynamical matter density in the solar neighbourhood using the second Gaia data release (DR2). The dynamical matter density distribution is inferred in a framework of a Bayesian hierarchical model, which accounts for…

Astrophysics of Galaxies · Physics 2019-02-27 Axel Widmark

Matter distribution models of the Milky Way galaxy are usually stationary, although there are known to be wave-like perturbations in the disc at $\sim10\%$ level of the total density. Modelling of the overall acceleration field by allowing…

Astrophysics of Galaxies · Physics 2021-08-18 Rain Kipper , Peeter Tenjes , Elmo Tempel , Roberto de Propris

We present a mock catalog of Milky Way stars, matching in volume and depth the content of the Gaia data release 2 (GDR2). We generated our catalog using Galaxia, a tool to sample stars from a Besancon Galactic model, together with a…

Astrophysics of Galaxies · Physics 2018-06-06 Jan Rybizki , Markus Demleitner , Morgan Fouesneau , Coryn Bailer-Jones , Hans-Walter Rix , Rene Andrae

The velocity distribution of stars in the Solar neighbourhood is inhomogeneous and rich with stellar streams and kinematic structures. These may retain important clues of the formation and dynamical history of the Milky Way. However, the…

Astrophysics of Galaxies · Physics 2017-12-13 Iryna Kushniruk , Thiebaut Schirmer , Thomas Bensby

We consider two previously studied samples of OB stars with different distance scales. The first one consists of 98 massive spectroscopic binary stars with photometric distances, and the second one consists on 140 OB stars with the…

Astrophysics of Galaxies · Physics 2017-03-22 V. V. Bobylev , A. T. Bajkova

We applied the currently most comprehensive version of the statistical-parallax technique to derive kinematical parameters of the maser sample with 136 sources. Our kinematic model comprises the overall rotation of the Galactic disk and the…

Astrophysics of Galaxies · Physics 2017-06-21 A. S. Rastorguev , N. D. Utkin , M. V. Zabolotskikh , A. K. Dambis , A. T. Bajkova , V. V. Bobylev

We use low-amplitude, long period variable (LA-LPV) candidates in \textit{Gaia} DR3 to trace the kinematics and dynamics of the Milky Way bar. LA-LPVs, like other LPVs, are intrinsically bright and follow a tight period-luminosity relation,…

Astrophysics of Galaxies · Physics 2024-12-20 Hanyuan Zhang , Vasily Belokurov , N. Wyn Evans , Sarah G. Kane , Jason L. Sanders

A proper understanding of the Milky Way (MW) dwarf galaxies in a cosmological context requires knowledge of their 3D velocities and orbits. However, proper motion (PM) measurements have generally been of limited accuracy and available only…

Astrophysics of Galaxies · Physics 2018-11-14 T. K. Fritz , G. Battaglia , M. S. Pawlowski , N. Kallivayalil , R. van der Marel , T. S. Sohn , C. Brook , G. Besla