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zadetkov: 421
1.
  • A study of the gas–star for... A study of the gas–star formation relation over cosmic time
    Genzel, R.; Tacconi, L. J.; Gracia-Carpio, J. ... Monthly notices of the Royal Astronomical Society, October 2010, Letnik: 407, Številka: 4
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    We use the first systematic data sets of CO molecular line emission in z∼ 1–3 normal star-forming galaxies (SFGs) for a comparison of the dependence of galaxy-averaged star formation rates on ...
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2.
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3.
  • High molecular gas fraction... High molecular gas fractions in normal massive star-forming galaxies in the young Universe
    Shapley, A; Comerford, J; Bournaud, F ... Nature (London), 02/2010, Letnik: 463, Številka: 7282
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    Stars form from cold molecular interstellar gas. As this is relatively rare in the local Universe, galaxies like the Milky Way form only a few new stars per year. Typical massive galaxies in the ...
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4.
  • PHIBSS: Unified Scaling Rel... PHIBSS: Unified Scaling Relations of Gas Depletion Time and Molecular Gas Fractions
    Tacconi, L. J.; Genzel, R.; Saintonge, A. ... The Astrophysical journal, 02/2018, Letnik: 853, Številka: 2
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    Abstract This paper provides an update of our previous scaling relations between galaxy-integrated molecular gas masses, stellar masses, and star formation rates (SFRs), in the framework of the star ...
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5.
  • The rapid formation of a la... The rapid formation of a large rotating disk galaxy three billion years after the Big Bang
    GENZEL, R; TACCONI, L. J; NESVADBA, N ... Nature, 08/2006, Letnik: 442, Številka: 7104
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    Observations and theoretical simulations have established a framework for galaxy formation and evolution in the young Universe. Galaxies formed as baryonic gas cooled at the centres of collapsing ...
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6.
  • Evidence for mature bulges ... Evidence for mature bulges and an inside-out quenching phase 3 billion years after the Big Bang
    Tacchella, S.; Carollo, C. M.; Renzini, A. ... Science (American Association for the Advancement of Science), 04/2015, Letnik: 348, Številka: 6232
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    Most present-day galaxies with stellar masses ≥1011 solar masses show no ongoing star formation and are dense spheroids. Ten billion years ago, similarly massive galaxies were typically forming stars ...
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7.
  • The Impact of Cold Gas Accr... The Impact of Cold Gas Accretion Above a Mass Floor on Galaxy Scaling Relations
    Bouché, N; Dekel, A; Genzel, R ... The Astrophysical journal, 08/2010, Letnik: 718, Številka: 2
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    Using the cosmological baryonic accretion rate and normal star formation (SF) efficiencies, we present a very simple model for star-forming galaxies that accounts for the mass and redshift ...
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8.
  • Dust Attenuation, Bulge For... Dust Attenuation, Bulge Formation, and Inside-out Quenching of Star Formation in Star-forming Main Sequence Galaxies at z ∼ 2
    Tacchella, S.; Carollo, C. M.; Schreiber, N. M. Förster ... The Astrophysical journal, 05/2018, Letnik: 859, Številka: 1
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    Abstract We derive 2D dust attenuation maps at ∼1 kpc resolution from the UV continuum for 10 galaxies on the z  ∼ 2 star-forming main sequence (SFMS). Comparison with IR data shows that 9 out of 10 ...
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9.
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10.
  • Ionized and Molecular Gas K... Ionized and Molecular Gas Kinematics in a z = 1.4 Star-forming Galaxy
    Übler, H.; Genzel, R.; Tacconi, L. J. ... Astrophysical journal. Letters, 02/2018, Letnik: 854, Številka: 2
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    Abstract We present deep observations of a z  = 1.4 massive, star-forming galaxy (SFG) in molecular and ionized gas at comparable spatial resolution (CO 3–2, NOrthern Extended Millimeter Array ...
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zadetkov: 421

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