The formation of submillimetre-bright galaxies from gas infall over a billion years. Narayanan, D., Turk, M., Feldmann, R., Robitaille, T., Hopkins, P., Thompson, R., Hayward, C., Ball, D., Faucher-Giguère, C., & Kereš, D. Nature, 525(7570):496–499, September, 2015. Number: 7570 Publisher: Nature Publishing Group
The formation of submillimetre-bright galaxies from gas infall over a billion years [link]Paper  doi  abstract   bibtex   
Submillimetre-bright galaxies at high redshift are the most luminous, heavily star-forming galaxies in the Universe, but cosmological simulations of such galaxies have so far been unsuccessful; now a cosmological hydrodynamic galaxy formation simulation is reported that can form a submillimetre galaxy that simultaneously satisfies the broad range of observed physical constraints.
@article{narayanan_formation_2015,
	title = {The formation of submillimetre-bright galaxies from gas infall over a billion years},
	volume = {525},
	copyright = {2015 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.},
	issn = {1476-4687},
	url = {https://www.nature.com/articles/nature15383},
	doi = {10.1038/nature15383},
	abstract = {Submillimetre-bright galaxies at high redshift are the most luminous, heavily star-forming galaxies in the Universe, but cosmological simulations of such galaxies have so far been unsuccessful; now a cosmological hydrodynamic galaxy formation simulation is reported that can form a submillimetre galaxy that simultaneously satisfies the broad range of observed physical constraints.},
	language = {en},
	number = {7570},
	urldate = {2020-06-02},
	journal = {Nature},
	author = {Narayanan, Desika and Turk, Matthew and Feldmann, Robert and Robitaille, Thomas and Hopkins, Philip and Thompson, Robert and Hayward, Christopher and Ball, David and Faucher-Giguère, Claude-André and Kereš, Dušan},
	month = sep,
	year = {2015},
	note = {Number: 7570
Publisher: Nature Publishing Group},
	pages = {496--499},
}

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