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相关论文: SNII enrichment and the star cluster mass function

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We review the yields of intermediate mass elements (from C to Zn) from massive stars and their associated uncertainties, in the light of recent theoretical results. We consider the role of those yields for our understanding of the chemical…

天体物理学 · 物理学 2009-10-31 Nikos Prantzos

The chemical evolution of the Universe is governed by the chemical yields from stars, which in turn is determined primarily by the initial stellar mass. Even stars as low as 0.9Msun can, at low metallicity, contribute to the chemical…

太阳与恒星天体物理 · 物理学 2015-06-19 Amanda I. Karakas , John C. Lattanzio

We use deep Hubble Space Telescope photometry of the rich, young (~20-45 Myr-old) star cluster NGC 1818 in the Large Magellanic Cloud to derive its stellar mass function (MF) down to ~0.15 Msun. This represents the deepest robust MF thus…

太阳与恒星天体物理 · 物理学 2015-05-13 Q. Liu , R. de Grijs , L. C. Deng , Y. Hu , I. Baraffe , S. F. Beaulieu

The James Webb Space Telescope (JWST) has uncovered an abundance of $z>10$ galaxies bright in the ultraviolet (UV) that has challenged traditional theoretical models at high redshifts. Recently, various new models have emerged to address…

星系天体物理 · 物理学 2025-02-19 Anne Hutter , Elie R Cueto , Pratika Dayal , Stefan Gottlöber , Maxime Trebitsch , Gustavo Yepes

We explore a scenario where metal-poor globular clusters (GCs) are enriched by the first supernovae in the Universe. If the first stars in a 10^7 Msun dark halo were very massive (>180 Msun), then a pair instability supernova from a single…

天体物理学 · 物理学 2009-11-10 Michael A. Beasley , Daisuke Kawata , Frazer. R. Pearce , Duncan A. Forbes , Brad K. Gibson

The initial mass function (IMF) of stars is a key quantity affecting almost every field of astrophysics, yet it remains unclear what physical mechanisms determine it. We present the first runs of the STARFORGE project, using a new numerical…

The distribution of core radii of rich clusters in the Large Magellanic Cloud (LMC) systematically increases in both upper limit and spread with increasing cluster age. Cluster-to-cluster variations in the stellar initial mass function…

Stars form in dense, dusty clumps of molecular clouds, but little is known about their origin and evolution. In particular, the relationship between the mass distribution of these clumps (also known as the "clump mass function", or CMF) and…

The semi-empirical initial-final mass relation (IFMR) connects spectroscopically analyzed white dwarfs in star clusters to the initial masses of the stars that formed them. Most current stellar evolution models, however, predict that stars…

太阳与恒星天体物理 · 物理学 2019-01-30 Jeffrey D. Cummings , Jason S. Kalirai , Jieun Choi , Cyril Georgy , Pier-Emmanuel Tremblay , Enrico Ramirez-Ruiz

The galaxy-wide stellar initial mass function (IGIMF) of a galaxy is thought to depend on its star formation rate (SFR). Using a catalogue of observational properties of early-type galaxies (ETGs) and a relation that correlates the…

星系天体物理 · 物理学 2019-10-10 Joerg Dabringhausen

One way to constrain the nature of the high-redshift progenitors of the Milky Way is to look at the low-metallicity stellar populations of the different Galactic components today. For example, high-resolution spectroscopy of very metal poor…

星系天体物理 · 物理学 2015-06-16 Duane M. Lee , Kathryn V. Johnston , Jason Tumlinson , Bodhisattva Sen , Joshua D. Simon

The stellar initial mass function (IMF) in star clusters is reviewed. Uncertainties in the observations are emphasized. We suggest there is a distinct possibility that cluster IMFs vary systematically with density or pressure. Dense…

天体物理学 · 物理学 2007-05-23 Bruce G. Elmegreen

The connection between the pre-stellar core mass function (CMF) and the stellar initial mass function (IMF) lies at the heart of all star formation theories. In this paper, we study the earliest phases of star formation with a series of…

星系天体物理 · 物理学 2019-05-22 Evangelia Ntormousi , Patrick Hennebelle

The minimum initial mass required for a star to explode as an Fe core collapse supernova, typically denoted $M_\text{mas}$, is an important quantity in stellar evolution because it defines the border between intermediate mass and massive…

太阳与恒星天体物理 · 物理学 2023-08-14 Giulia C. Cinquegrana , Meridith Joyce , Amanda I. Karakas

We show that the ambipolar-diffusion--initiated fragmentation of molecular clouds leads simply and naturally to an initial core mass function (CMF) which is very similar to the initial stellar mass function (IMF) and in excellent agreement…

太阳与恒星天体物理 · 物理学 2015-05-13 Matthew W. Kunz , Telemachos Ch. Mouschovias

[Abridged] We calculate the structural evolution and nucleosynthesis of a grid of models covering the metallicity range: -6.5 < [Fe/H] < -3.0 (plus Z=0), and mass range: 0.85 < M < 3.0 Msun, amounting to 20 stars in total. In this paper,…

太阳与恒星天体物理 · 物理学 2010-05-19 S. W. Campbell , J. C. Lattanzio , .

We study star cluster formation in various environments with different metallicities and column densities by performing a suite of three-dimensional radiation hydrodynamics simulations. We find that the photoionization feedback from massive…

(shortened) The first couple of stellar generations may have been massive, of order 100 Msun, and to have played a dominant role in galaxy formation and the chemical enrichment of the early Universe. Some fraction of these objects may have…

太阳与恒星天体物理 · 物理学 2015-06-11 Lianne Muijres , Jorick S. Vink , A. de Koter , R. Hirschi , N. Langer , S. -C. Yoon

We investigate the effect of a metallicity-dependent stellar initial mass function (IMF), as deduced observationally by Martin-Navarro et al. (2015c), on the inferred stellar masses and star formation rates (SFRs) of a representative sample…

星系天体物理 · 物理学 2016-08-31 Bart Clauwens , Joop Schaye , Marijn Franx

We develop a statistical approach for description of dense structures (cores) in molecular clouds that might be progenitors of stars. Our basic assumptions are a core mass-density relationship and a power-law density distribution of these…

太阳与恒星天体物理 · 物理学 2012-06-08 Sava Donkov , Orlin Stanchev , Todor V. Veltchev
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