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We present an analysis of the presence of substructures in the stellar stream of the Palomar 5 globular cluster, as derived from Sloan Digital Sky Survey data. Using a matched filter technique, we recover the positions and sizes of…

星系天体物理 · 物理学 2016-05-19 Guillaume F. Thomas , Rodrigo Ibata , Benoit Famaey , Nicolas F. Martin , Geraint F. Lewis

Recent analyses of the Pal 5 and GD-1 tidal streams suggest that the inner dark matter halo of the Milky Way is close to spherical, in tension with predictions from collisionless N-body simulations of cosmological structure formation. We…

星系天体物理 · 物理学 2018-05-23 Biwei Dai , Brant E. Robertson , Piero Madau

Stellar streams are essential tracers of the gravitational potential of the Milky Way, with key implications to the problem of dark matter (DM) model distributions, either within or beyond phenomenological $\Lambda$CDM halos. For the first…

星系天体物理 · 物理学 2025-07-23 Santiago Collazo , Martín F. Mestre , Carlos R. Argüelles

The origins of most stellar streams in the Milky Way are unknown. With improved proper motions provided by Gaia EDR3, we show that the orbits of 23 Galactic stellar streams are highly clustered in orbital phase space. Based on their…

Stellar streams originating in disrupted dwarf galaxies and star clusters are observed around the Milky Way and nearby galaxies. Such substructures are the important tracers that record how the host haloes have accreted progenitor galaxies.…

星系天体物理 · 物理学 2019-05-29 Yu Morinaga , Tomoaki Ishiyama , Takanobu Kirihara , Kazuki Kinjo

We perform the first self-consistent measurement of the rate of interactions between stellar tidal streams created by disrupting satellites and dark subhalos in a cosmological simulation of a Milky-Way-mass galaxy. Using a retagged version…

星系天体物理 · 物理学 2016-08-22 Robyn E. Sanderson , Carlos Vera-Ciro , Amina Helmi , Joren Heit

Most density based stream clustering algorithms separate the clustering process into an online and offline component. Exact summarized statistics are being employed for defining micro-clusters or grid cells during the online stage followed…

数据库 · 计算机科学 2016-12-09 Andrei Sorin Sabau

We develop statistical methods for identifying star streams in the halo of the Milky Way galaxy that exploit observed spatial and radial velocity distributions. Within a great circle, departures of the observed spatial distribution from…

星系天体物理 · 物理学 2015-06-03 Charles King , Warren R. Brown , Margaret J. Geller , Scott J. Kenyon

In this work, we study how the abundance and dynamics of populations of disrupting satellite galaxies change systematically as a function of host galaxy properties. We apply a theoretical model of the phase-mixing process to classify intact…

星系天体物理 · 物理学 2024-09-24 Adriana Dropulic , Nora Shipp , Stacy Kim , Zeineb Mezghanni , Lina Necib , Mariangela Lisanti

We present a panoramic map of the entire Milky Way halo north of dec~-30 degrees (~30,000 deg^2), constructed by applying the matched-filter technique to the Pan-STARRS1 3Pi Survey dataset. Using single-epoch photometry reaching to g~22, we…

We present an atlas and follow-up spectroscopic observations of 87 thin stream-like structures detected with the STREAMFINDER algorithm in Gaia DR3, of which 29 are new discoveries. Here we focus on using these streams to refine mass models…

We present SkyCURTAINs, a data driven and model agnostic method to search for stellar streams in the Milky Way galaxy using data from the Gaia telescope. SkyCURTAINs is a weakly supervised machine learning algorithm that builds a background…

星系天体物理 · 物理学 2024-05-22 Debajyoti Sengupta , Stephen Mulligan , David Shih , John Andrew Raine , Tobias Golling

We present evidence for a new Milky Way stellar tidal stream in the direction of the Andromeda and Triangulum (M31 and M33) galaxies. Using a matched-filter technique, we search the Sloan Digital Sky Survey Data Release 8 by creating…

星系天体物理 · 物理学 2015-06-11 Ana Bonaca , Marla Geha , Nitya Kallivayalil

The narrow GD-1 stream of stars, spanning 60 deg on the sky at a distance of ~10 kpc from the Sun and ~15 kpc from the Galactic center, is presumed to be debris from a tidally disrupted star cluster that traces out a test-particle orbit in…

星系天体物理 · 物理学 2010-03-04 Sergey E. Koposov , Hans-Walter Rix , David W. Hogg

Nearly a hundred stellar streams have been found to date around the Milky Way and the number keeps growing at an ever faster pace. Here we present the galstreams library, a compendium of angular position, distance, proper motion and radial…

星系天体物理 · 物理学 2023-02-08 Cecilia Mateu

Stellar streams provide unique probes of galactic potentials, with the longer streams normally providing the cleaner measurements. In this paper, we show an example of a short tidal stream that is particularly sensitive to the shape of the…

星系天体物理 · 物理学 2015-06-04 H. Lux , J. I. Read , G. Lake , K. V. Johnston

This paper presents an example where the morphology of a single stellar stream can be used to rule out a specific galactic potential form without the need for velocity information. We investigate the globular cluster Palomar5 (Pal 5), which…

星系天体物理 · 物理学 2016-04-01 Sarah Pearson , Andreas H. W. Küpper , Kathryn V. Johnston , Adrian M. Price-Whelan

By means of direct N-body simulations and simplified numerical models, we study the formation and characteristics of the tidal tails around Palomar 5, along its orbit in the Milky Way potential. Unlike previous findings, we are able to…

星系天体物理 · 物理学 2015-06-11 Alessandra Mastrobuono-Battisti , Paola Di Matteo , Marco Montuori , Misha Haywood

Stellar shells and streams are remnants of satellite galaxies visible around galaxies. Advances in low-surface-brightness observations and increasing resolution of cosmological simulations now allow investigating the properties and origin…

The longest recognized stellar stream in the Milky Way Galaxy has an expanse of over more than half the north sky. There was a physical disturbance within the stream, 500 million years ago, which could have been the scar of a dark matter…

星系天体物理 · 物理学 2022-11-29 Carissma McGee