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相关论文: A Splashback-like Feature of Central Galaxies in G…

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We present the direct detection of the splashback feature using the sample of massive galaxy clusters from the Local Cluster Substructure Survey (LoCuSS). This feature is clearly detected (above $5\sigma$) in the stacked luminosity density…

We present an analysis of the splashback radius ($R_{\text{sp}}$) and the associated splashback mass ($M_{\text{sp}}$) for a sample of galaxy clusters using SDSS spectroscopic data and mock simulations. $R_{\text{sp}}$ marks a physical…

宇宙学与河外天体物理 · 物理学 2025-07-30 Lucas Gabriel-Silva , Laerte Sodré

We examine the outskirts of galaxy clusters in the C-EAGLE simulations to quantify the `edges' of the stellar and dark matter distribution. The radius of the steepest slope in the dark matter, commonly used as a proxy for the splashback…

Splashback refers to the process of matter that is accreting onto a dark matter halo reaching its first orbital apocenter and turning around in its orbit. The cluster-centric radius at which this process occurs, r_sp, defines a halo…

We measure the projected number density profiles of galaxies and the splashback feature in clusters selected by the Sunyaev--Zeldovich (SZ) effect from the Advanced Atacama Cosmology Telescope (AdvACT) survey using galaxies observed by the…

星系天体物理 · 物理学 2021-12-15 Susmita Adhikari , Tae-hyeon Shin , Bhuvnesh Jain , Matt Hilton , Eric Baxter , Chihway Chang , Risa H. Wechsler , Nick Battaglia , J. Richard Bond , Sebastian Bocquet , Joseph DeRose , Steve K. Choi , Mark Devlin , Jo Dunkley , August E. Evrard , Simone Ferraro , J. Colin Hill , John P. Hughes , Patricio A. Gallardo , Martine Lokken , Amanda MacInnis , Jeffrey McMahon , Mathew S. Madhavacheril , Frederico Nati , Laura B. Newburgh , Michael D. Niemack , Lyman A. Page , Antonella Palmese , Bruce Partridge , Eduardo Rozo , Eli Rykoff , Maria Salatino , Alessandro Schillaci , Neelima Sehgal , Cristóbal Sifón , Chun-Hao To , Ed Wollack , Hao-Yi Wu , Zhilei Xu , Michel Aguena , Sahar Allam , Alexandra Amon , James Annis , Santiago Avila , David Bacon , Emmanuel Bertin , Sunayana Bhargava , David Brooks , David L. Burke , Aurelio C. Rosell , Matias Carrasco Kind , Jorge Carretero , Francisco Javier Castander , Ami Choi , Matteo Costanzi , Luiz N. da Costa , Juan De Vicente , Shantanu Desai , Thomas H. Diehl , Peter Doel , Spencer Everett , Ismael Ferrero , Agnès Ferté , Brenna Flaugher , Pablo Fosalba , Josh Frieman , Juan García-Bellido , Enrique Gaztanaga , Daniel Gruen , Robert A. Gruendl , Julia Gschwend , Gaston Gutierrez , Will G. Hartley , Samuel R. Hinton , Devon L. Hollowood , Klaus Honscheid , David J. James , Tesla Jeltema , Kyler Kuehn , Nikolay Kuropatkin , Ofer Lahav , Marcos Lima , Marcio A. G. Maia , Jennifer L. Marshall , Paul Martini , Peter Melchior , Felipe Menanteau , Ramon Miquel , Robert Morgan , Ricardo L. C. Ogando , Francisco Paz-Chinchón , Andrés Plazas Malagón , Eusebio Sanchez , Basilio Santiago , Vic Scarpine , Santiago Serrano , Ignacio Sevilla-Noarbe , Mathew Smith , Marcelle Soares-Santos , Eric Suchyta , Molly E. C. Swanson , Tamas N. Varga , Reese D. Wilkinson , Yuanyuan Zhang , Jason E. Austermann , James A. Beall , Daniel T. Becker , Edward V. Denison , Shannon M. Duff , Gene C. Hilton , Johannes Hubmayr , Joel N. Ullom , Jeff Van Lanen , Leila R. Vale , DES Collaboration , ACT Collaboration

We present a study of the distribution of galaxies along the radius of 157 groups and clusters of galaxies (200~km~s$^{-1}$ < $\sigma$ < 1100~km~s$^{-1}$) of the local Universe (0.01 < $z$ < 0.1). We introduced a new boundary of galaxy…

宇宙学与河外天体物理 · 物理学 2023-01-16 Flera G. Kopylova , Alexander I. Kopylov

The splashback radius was proposed as a physically motivated boundary of clusters as it sets the limit between the infalling and the orbitally dominated regions. However, galaxy clusters are complex objects connected to filaments of the…

宇宙学与河外天体物理 · 物理学 2024-09-04 Théo Lebeau , Stefano Ettori , Nabila Aghanim , Jenny G. Sorce

We explore the properties of galaxies on the outskirts of clusters and their dependence on recent dynamical history in order to understand the real impact that the cluster core has on the evolution of galaxies. We analyse the properties of…

宇宙学与河外天体物理 · 物理学 2014-05-08 H. Muriel , V. Coenda

The splashback radius, the radius of the apocenter of the first orbit of infalling material, is a measurable quantity marking the boundary between a galaxy cluster and its infalling region. We report detections of splashback radii in total…

宇宙学与河外天体物理 · 物理学 2026-02-09 A. Trudeau , Anthony H. Gonzalez , K. Thongkham , M. Brodwin , Thomas Connor , Peter R. M. Eisenhardt , Emily Moravec , S. A. Stanford , D. Stern

The splashback radius of a dark matter halo, which corresponds to the first apocenter radius reached by infalling matter and substructures, has been detected around galaxy clusters using a multitude of observational methods, including weak…

宇宙学与河外天体物理 · 物理学 2023-05-29 Yuanyuan Zhang , Susmita Adhikari , Matteo Costanzi , Josh Frieman , Jim Annis , Chihway Chang

We show that the projected number density profiles of SDSS photometric galaxies around galaxy clusters displays strong evidence for the splashback radius, a sharp halo edge corresponding to the location of the first orbital apocenter of…

A self-similar spherical collapse model predicts a dark matter (DM) splashback and accretion shock in the outskirts of galaxy clusters while misses a key ingredient of structure formation - processes associated with mergers. To fill this…

宇宙学与河外天体物理 · 物理学 2021-07-14 Congyao Zhang , Irina Zhuravleva , Andrey Kravtsov , Eugene Churazov

The outskirts of accreting dark matter haloes exhibit a sudden drop in density delimiting their multi-stream region. Due to the dynamics of accretion, the location of this physically motivated edge strongly correlates with the halo growth…

宇宙学与河外天体物理 · 物理学 2021-05-26 O. Contigiani , Y. M. Bahé , H. Hoekstra

We explore how the splashback radius ($R_{\rm sp}$) of galaxy clusters, measured using the number density of the subhalo population, changes based on various selection criteria using the IllustrisTNG cosmological galaxy formation…

星系天体物理 · 物理学 2022-04-06 Stephanie O'Neil , Josh Borrow , Mark Vogelsberger , Benedikt Diemer

We use 1697 clusters of galaxies from the Illustris TNG300-1 simulation (mass $M_{200c}>10^{14}$M$_\odot$ and redshift range $0.01\leq z \leq 1.04$) to explore the physics of the cluster infall region. We use the average radial velocity…

宇宙学与河外天体物理 · 物理学 2024-01-29 Michele Pizzardo , Margaret J. Geller , Scott J. Kenyon , Ivana Damjanov

The splashback radius is a physical scale in dark matter halos that is set by the gravitational dynamics of recently accreted shells. We use analytical models and N-body simulations to study the dependence of splashback on dark energy and…

宇宙学与河外天体物理 · 物理学 2018-11-28 Susmita Adhikari , Jeremy Sakstein , Bhuvnesh Jain , Neal Dalal , Baojiu Li

We use publicly available data for the Millennium Simulation to explore the implications of the recent detection of assembly bias and splashback signatures in a large sample of galaxy clusters. These were identified in the SDSS/DR8…

宇宙学与河外天体物理 · 物理学 2017-12-01 Philipp Busch , Simon D. M. White

The splashback radius marks the physical boundary of galaxy clusters, separating orbiting from infalling material, and provides a halo definition free from pseudo-evolution. In this work, we present a fully photometric framework to measure…

宇宙学与河外天体物理 · 物理学 2026-05-21 Lucas Gabriel-Silva , Laerte Sodré

At modest radii from the centre of galaxy clusters, individual galaxies may be infalling to the cluster for the first time, or have already visited the cluster core and are coming back out again. This latter population of galaxies is known…

宇宙学与河外天体物理 · 物理学 2015-05-20 Kevin A. Pimbblet

Giant clumps are a characteristic feature of observed high-redshift disk galaxies. We propose that these kpc-sized clumps have a complex substructure and are the result of many smaller clumps self-organizing themselves into clump clusters…

星系天体物理 · 物理学 2016-03-16 Manuel Behrendt , Andreas Burkert , Marc Schartmann
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