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相关论文: The Smith Cloud: high-velocity accretion and dark-…

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Filamentary flows toward the centre of molecular clouds have been recognized as a crucial process in the formation and evolution of stellar clusters. In this paper, we present a comprehensive observational study that investigates the gas…

The Smith high velocity cloud (V(LSR) = 98 kms) has been observed at two locations in the emission lines [OIII]5007, [NII]6548 and H-alpha. Both the [NII] and H-alpha profiles show bright cores due to the Reynolds layer, and red wings with…

天体物理学 · 物理学 2009-10-30 J. Bland-Hawthorn , S. Veilleux , G. Cecil , M. Putman , B. Gibson , P. Maloney

We perform high-resolution hydrodynamic simulations of a Milky Way-mass galaxy in a fully cosmological setting using the adaptive mesh refinement code, Enzo, and study the kinematics of gas in the simulated galactic halo. We find that the…

宇宙学与河外天体物理 · 物理学 2015-06-05 M. Ryan Joung , Mary E. Putman , Greg L. Bryan , Ximena Fernandez , J. E. G. Peek

We have used the Green Bank Telescope (GBT) to search for the OH molecule at several locations in the Smith Cloud, one of the most prominent of the high-velocity clouds that surround the Milky Way. Five positions with a high HI column…

星系天体物理 · 物理学 2024-03-14 Anthony H. Minter , Felix J. Lockman , S. A. Balashev , H. Alyson Ford

We use a model of the Galactic fountain to simulate the neutral-hydrogen emission of the Milky Way Galaxy. The model was developed to account for data on external galaxies with sensitive HI data. For appropriate parameter values, the model…

星系天体物理 · 物理学 2015-05-30 A. Marasco , F. Fraternali , J. J. Binney

We revisit the reliability of metallicity estimates of high velocity clouds with the help of hydrodynamical simulations. We quantify the effect of accretion and viewing angle on metallicity estimates derived from absorption lines. Model…

星系天体物理 · 物理学 2021-11-24 F. Heitsch , A. Marchal , M. -A. Miville-Deschênes , J. M. Shull , A. J. Fox

The standard treatment of cooling in Cold Dark Matter halos assumes that all of the gas within a ``cooling radius'' cools and contracts monolithically to fuel galaxy formation. Here we take into account the expectation that the hot gas in…

天体物理学 · 物理学 2010-04-06 Ariyeh H. Maller , James S. Bullock

We derive the mass model of the Milky Way (MW) using a cored dark matter (DM) halo profile and recent data. The method used consists in fitting a spherically symmetric model of the Galaxy with a Burkert DM halo profile to available data: MW…

星系天体物理 · 物理学 2015-06-15 Fabrizio Nesti , Paolo Salucci

Recent proper motion measurements of the Large and Small Magellanic Clouds (LMC and SMC, respectively) by Kallivayalil et al (2006a,b) suggest that the 3D velocities of the Clouds are substantially higher (~100 km/s) than previously…

The high-velocity cloud (HVC) Complex A is a probe of the physical conditions in the Galactic halo. The kinematics, morphology, distance, and metallicity of Complex A indicate that it represents new material that is accreting onto the…

We construct a model for the Milky Way Galaxy composed of a stellar disc and bulge embedded in a dark-matter halo. All components are modelled as $N$-body systems with up to 8 billion equal-mass particles and integrated up to an age of…

星系天体物理 · 物理学 2018-10-17 Michiko S. Fujii , Jeroen Bédorf , Junichi Baba , Simon Portegies Zwart

Projected quasar galaxy pairs provide powerful means to study the circumgalactic medium (CGM) that maintains the relics of galactic feedback and the accreted gas from the intergalactic medium. Here, we study the nature of a Lyman Limit…

If the favored hierarchical cosmological model is correct, then the Milky Way system should have accreted ~100-200 luminous satellite galaxies in the past \~12 Gyr. We model this process using a hybrid semi-analytic plus N-body approach…

天体物理学 · 物理学 2008-11-26 James S. Bullock , Kathryn V. Johnston

(Abridged) Axisymmetric models of the Milky Way exhibit strong interrelations between the Galactic constants (R_0 and T_0), the stellar columndensity (S_*) and the shape of the dark matter (DM) halo. Here we present analytical relations…

天体物理学 · 物理学 2009-11-06 R. P. Olling , M. R. Merrifield

The size and mass of two circum-galactic medium (CGM) clouds in the halo (impact parameter = 65 kpc) of a nearby late-type galaxy, MGC-01-04-005 ($cz = 1865$ km/s), are investigated using a close triplet of QSO sight lines (the "LBQS…

星系天体物理 · 物理学 2015-09-16 Julie D. Davis , Brian A. Keeney , Charles W. Danforth , John T. Stocke

We present evidence that the accretion of warm gas onto the Galaxy today is at least as important as cold gas accretion. For more than a decade, the source of the bright H-alpha emission (up to 750 mR) along the Magellanic Stream has…

天体物理学 · 物理学 2015-05-13 J. Bland-Hawthorn

We use one of the highest resolution cosmological SPH simulations to date to demonstrate that cold gaseous clouds form around Milky Way size galaxies. We further explore mechanisms responsible for their formation and show that a large…

宇宙学与河外天体物理 · 物理学 2009-07-22 Dušan Kereš , Lars Hernquist

One of the key predictions of the WIMP paradigm for Dark Matter (DM) is that DM particles can annihilate into charged particles. These annihilations will proceed in e.g. Galactic subhalos such as dwarf Galaxies or, as recently pointed out,…

星系天体物理 · 物理学 2016-11-14 Natacha Leite , Robin Reuben , Guenter Sigl , Michel H. G. Tytgat , Martin Vollmann

We present a steady-state analytical model for pressure-regulated formation of molecular clouds (MC) and stars (SF) in gaseous galactic disks and apply it to the Milky Way (MW). MC formation depends on midplane interstellar pressure…

星系天体物理 · 物理学 2025-10-06 José Franco , Aldo Rodríguez-Puebla , Javier Ballesteros-Paredes , Manuel Zamora-Avilez

We present an analysis of the large-scale molecular cloud structure and of the stability of clumpy structures in nearby molecular clouds. In our recent work, we identified a structural transition in molecular clouds by studying the…

星系天体物理 · 物理学 2015-05-27 J. Kainulainen , H. Beuther , R. Banerjee , C. Federrath , T. Henning