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相关论文: Chemical abundance patterns in Local Group galaxie…

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In this study, with the aid of N-Body simulations based on quasi-cosmological initial conditions, we have followed the formation and evolution of two models of early-type galaxies, from their separation from global expansion of the Universe…

天体物理学 · 物理学 2009-11-11 Emiliano Merlin , Cesare Chiosi

The evolution of radial gradients of metallicity in disk galaxies and its relation with the disk formation are not well understood. Theoretical models of galactic chemical evolution make contrasting predictions about the time evolution of…

天体物理学 · 物理学 2009-11-13 Laura Magrini , Edvige Corbelli , Daniele Galli

Adopting a single-zone framework, with accretion of primordial gas on a free-fall timescale, the chemical evolution of the Galactic bulge is calculated, assuming (i) a corresponding rapid timescale for star formation, and (ii) an initial…

天体物理学 · 物理学 2007-05-23 Brad K. Gibson , Angela J. MacDonald , Patricia Sanchez-Blazquez , Leticia Carigi

The Milky Way stellar disk has both a thin and a thick component. The thin disk is composed mostly of younger stars ($\lesssim$8 Gyr) with a lower abundance of $\alpha$ elements, while the thick disk contains predominantly older stars…

Ultrafaint dwarf galaxies (UFDs) are typically assumed to have simple, stellar populations with star formation ending at reionization. Yet as the observations of these galaxies continue to improve, their star formation histories (SFHs) are…

星系天体物理 · 物理学 2018-02-07 Lauren Corlies , Kathryn V. Johnston , John H. Wise

The time-scales of chemical enrichment are fundamental to understand the evolution of abundances and abundance ratios in galaxies. In particular, the time-scales for the enrichment by SNe II and SNe Ia are crucial in interpreting the…

天体物理学 · 物理学 2015-05-13 Antonio Pipino , Francesca Matteucci

The distribution of metals in the intracluster medium (ICM) of galaxy clusters provides valuable information on their formation and evolution, on the connection with the cosmic star formation and on the effects of different gas processes.…

宇宙学与河外天体物理 · 物理学 2017-04-12 V. Biffi , S. Planelles , S. Borgani , D. Fabjan , E. Rasia , G. Murante , L. Tornatore , K. Dolag , G. L. Granato , M. Gaspari , A. M. Beck

In this lecture I will introduce the concept of galactic chemical evolution, namely the study of how and where the chemical elements formed and how they were distributed in the stars and gas in galaxies. The main ingredients to build models…

星系天体物理 · 物理学 2016-05-04 Francesca Matteucci

We analyse a set of galaxy interactions performed by using a self-consistent chemo-hydrodynamical model which includes star formation, Supernova feedback and chemical evolution. In agreement with previous works, we find that tidally-induced…

宇宙学与河外天体物理 · 物理学 2015-05-28 Josefa Perez , Leo Michel-Dansac , Patricia Tissera

An introduction is given to projects investigating galaxy evolution quantitatively by spectroscopic observations of very distant galaxies that have weak apparent brightnesses and small sizes as it is feasible with 10m-class telescopes like…

天体物理学 · 物理学 2007-05-23 Bodo L. Ziegler

A three-dimensional hydrodynamical N-body model for the formation of the Galaxy is presented with special attention to the formation of the bulge component. Starting with cosmologically motivated initial conditions, we obtain a…

天体物理学 · 物理学 2009-11-07 Naohito Nakasato , Ken'ichi Nomoto

We introduce and apply a new approach to probe the response of galactic stellar haloes to the interplay between cosmological merger histories and galaxy formation physics. We perform dark matter-only, zoomed simulations of two Milky…

星系天体物理 · 物理学 2022-01-21 Martin P. Rey , Tjitske K. Starkenburg

[Abridged] Motivated by upcoming data from astrometric and spectroscopic surveys of the Galaxy, we explore the chemical abundance properties and phase-space distributions in hierarchically-formed stellar halo simulations set in a LambdaCDM…

天体物理学 · 物理学 2008-11-26 Andreea S. Font , Kathryn V. Johnston , James S. Bullock , Brant E. Robertson

This paper reports simulations allowing for stochastic accretion and mass loss within closed and open systems modeled using a previously developed multi-population, multi-zone (halo, thick disk, thin disk) treatment. The star formation rate…

天体物理学 · 物理学 2009-11-10 G. Valle , S. N. Shore , D. Galli

We present chemodynamical simulations of a Milky Way-type galaxy using a self-consistent hydrodynamical code that includes supernova feedback and chemical enrichment, and predict the spatial distribution of elements from Oxygen to Zinc. In…

星系天体物理 · 物理学 2015-05-20 Chiaki Kobayashi , Naohito Nakasato

We use simple analytic reasoning to identify physical processes that drive the evolution of the cosmic star formation density in cold dark matter universes. Based on our analysis, we formulate a model to characterise the redshift dependence…

天体物理学 · 物理学 2009-07-09 Lars Hernquist , Volker Springel

We discuss early results from the first large N-body/hydrodynamical simulation to resolve the formation of galaxies in a cold dark matter universe. The simulation follows the formation of galaxies by gas cooling within dark halos of mass a…

We study the evolution of the galactic globular cluster system to determine its initial mass-function and the fraction of halo stars that could have come from disrupted globular clusters. We study the cluster evolution under the influence…

天体物理学 · 物理学 2007-05-23 H. Baumgardt

We use the cosmological semi-analytic model (SAM) for galaxy formation presented in Paper I to study the metallicities and abundance ratios of the intracluster medium (ICM) within the hierarchical structure formation paradigm. By requiring…

宇宙学与河外天体物理 · 物理学 2010-06-09 Matías Arrigoni , Scott C. Trager , Rachel S. Somerville

Recent observations demonstrate that the thin and thick disks of the Galaxy have different chemical abundance trends and evolution timescales. The relative abundances of $\alpha$-elements in the thick Galactic disk are increased relative to…

天体物理学 · 物理学 2009-11-11 T. V. Nykytyuk , T. V. Mishenina