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Space observatories like the Hubble Space Telescope and Gaia are providing unprecedented 6D phase space information of satellite galaxies. Such measurements can shed light on the structure and assembly history of the Local Group, but…

星系天体物理 · 物理学 2017-05-03 Ekta Patel , Gurtina Besla , Kaisey Mandel

This paper argues that the Milky Way galaxy is probably the largest member of the Local Group. The evidence comes from estimates of the total mass of the Andromeda galaxy (M31) derived from the three dimensional positions and radial…

天体物理学 · 物理学 2008-11-26 N. W. Evans , M. I. Wilkinson

The 3D velocities of M31 and M33 are important for understanding the evolution and cosmological context of the Local Group. Their most massive stars are detected by Gaia, and we use Data Release 2 (DR2) to determine the galaxy proper…

We measure the absolute proper motion of Andromeda III using ACS/WFC and WFPC2 exposures spanning an unprecedented 22-year time baseline. The WFPC2 exposures have been processed using a deep-learning centering procedure recently developed…

We present an analysis of the proper motion of the Andromeda galaxy (M31), based on the Early Third Data Release of the Gaia mission. We use the Gaia photometry to select young blue main sequence stars, and apply several quality cuts to…

星系天体物理 · 物理学 2021-09-06 J. -B. Salomon , R. Ibata , C. Reylé , B. Famaey , N. I. Libeskind , A. W. McConnachie , Y. Hoffman

A major uncertainty in the dynamical history of the local group of galaxies originates from the unknown transverse speed of the Andromeda galaxy (M31) relative to the Milky Way. We show that the recent VLBA measurement of the proper motion…

天体物理学 · 物理学 2009-11-13 Abraham Loeb , Mark J. Reid , Andreas Brunthaler , Heino Falcke

M31 has a giant stream of stars extending far to the south and a great deal of other tidal debris in its halo, much of which is thought to be directly associated with the southern stream. We model this structure by means of Bayesian…

We present a family of robust tracer mass estimators to compute the enclosed mass of galaxy haloes from samples of discrete positional and kinematical data of tracers, such as halo stars, globular clusters and dwarf satellites. The data may…

星系天体物理 · 物理学 2015-05-18 L. L. Watkins , N. W. Evans , J. An

Our nearest large cosmological neighbour, the Andromeda galaxy (M31), is a dynamical system, and an accurate measurement of its total mass is central to our understanding of its assembly history, the life-cycles of its satellite galaxies,…

星系天体物理 · 物理学 2018-01-24 Prajwal R. Kafle , Sanjib Sharma , Geraint F. Lewis , Aaron S. G. Robotham , Simon P. Driver

We measure the absolute proper motions of Andromeda V (And V) and Andromeda VI/Pegasus (And VI) dwarf galaxies, satellites of M31 located near its galactic plane. And VI is located the farthest from M31 among the six satellites with…

The total mass of a galaxy group, such as the Milky Way (MW) and the Andromeda Galaxy (M 31), is typically determined from the kinematics of satellites within their virial zones. Bahcall and Tremaine (1981) proposed the $v^2r$ estimator as…

星系天体物理 · 物理学 2025-05-01 Danila Makarov , Dmitry Makarov , Kirill Kozyrev , Noam Libeskind

In the rest frame of the Local Group (LG), the total momentum of the Milky Way (MW) and Andromeda (M31) should balance to zero. We use this fact to constrain new solutions for the solar motion with respect to the LG centre-of-mass, the…

星系天体物理 · 物理学 2015-06-19 Jonathan D. Diaz , Sergey E. Koposov , Mike Irwin , Vasily Belokurov , Wyn Evans

We present a dynamical measurement of the tangential motion of the Andromeda system, the ensemble consisting of the Andromeda Galaxy (M31) and its satellites. The system is modelled as a structure with cosmologically-motivated velocity…

星系天体物理 · 物理学 2016-01-27 J. -B. Salomon , R. A. Ibata , B. Famaey , N. F. Martin , G. F. Lewis

Inspired by recent studies of the Milky Way--LMC interaction and its implications for the Milky Way's global dynamical history, we investigate how the massive satellite galaxy M33 influences Andromeda's (M31) center of mass (COM) position…

星系天体物理 · 物理学 2025-04-04 Ekta Patel , Nicolas Garavito-Camargo , Ivanna Escala

Triangulum (M33) is the most massive satellite galaxy of Andromeda (M31), with a stellar mass of about $3\times10^9\; M_{\odot}$. Based on abundance matching techniques, M33's total mass at infall is estimated to be of order $10^{11}\;…

星系天体物理 · 物理学 2018-08-08 Ekta Patel , Jeffrey L. Carlin , Erik J. Tollerud , Michelle L. M. Collins , Gregory A. Dooley

This work investigates whether two known Andromeda (M31) satellites, Pisces (LGS 3) and Andromeda XVI, have interacted with M33, M31's most massive satellite. $\Lambda$CDM predictions imply a handful of satellite galaxies around M33, yet…

星系天体物理 · 物理学 2026-01-29 Ekta Patel , Paul Bennet , Sangmo Tony Sohn , Mark Fardal , Roeland van der Marel

We use Density Estimation Likelihood-Free Inference, $\Lambda$ Cold Dark Matter simulations of $\sim 2M$ galaxy pairs, and data from Gaia and the Hubble Space Telescope to infer the sum of the masses of the Milky Way and Andromeda (M31)…

星系天体物理 · 物理学 2021-01-20 Pablo Lemos , Niall Jeffrey , Lorne Whiteway , Ofer Lahav , Niam I Libeskind , Yehuda Hoffman

The interaction between an accreting satellite and the Andromeda galaxy (M31) has been studied analytically and numerically, using a high-resolution N-body simulation with $4\times10^7$ particles. For the first time, we show the…

天体物理学 · 物理学 2009-11-13 Masao Mori , R. Michael Rich

This paper is the first in a series which studies interactions between M31 and its satellites, including the origin of the giant southern stream. We construct accurate yet simple analytic models for the potential of the M31 galaxy to…

天体物理学 · 物理学 2009-11-10 J. J. Geehan , M. A. Fardal , A. Babul , P. Guhathakurta

We present an updated mass model for M31 that makes use of a Spitzer 3.6 $\mu$m image, a mass-to-light ratio gradient based on the galaxy's B-R colour profile, and observed rotation curve data from a variety of sources. We examine cases…

天体物理学 · 物理学 2008-09-10 Marc S. Seigar , Aaron J. Barth , James S. Bullock
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