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Showing 1–3 of 3 results
Advanced filters: Author: Eva Schinnerer Clear advanced filters
  • Massive clusters of galaxies have been found as early as 3.9 billion years after the Big Bang. Cosmological simulations predict that these systems should descend from 'protoclusters' — early overdensities of massive galaxies that merge hierarchically to form a cluster. Observational evidence for this picture, however, is sparse because high-redshift protoclusters are rare and difficult to observe. Here, a protocluster region 1 billion years (z = 5.3) after the Big Bang is reported. This cluster extends over >13 megaparsecs, contains a luminous quasar as well as a system rich in molecular gas. A lower limit of >4 × 1011 solar masses of dark and luminous matter in this region is placed, consistent with that expected from cosmological simulations.

    • Peter L. Capak
    • Dominik Riechers
    • Johannes G. Staguhn
    Research
    Nature
    Volume: 470, P: 233-235
  • Deep ALMA archival observations of submillimetre-bright galaxies at high redshifts show that spheroidal bulges formed much earlier than expected and are directly generated by star formation within the cores of highly luminous starburst galaxies.

    • Qing-Hua Tan
    • Emanuele Daddi
    • Francesco Valentino
    Research
    Nature
    Volume: 636, P: 69-74
  • Statistical analysis of velocity fluctuations in the interstellar medium (ISM) of the Milky Way and NGC 4321 show that the motion of molecular gas over scales ranging from 0.1 to 1,000 pc is similar, and consistent with that generated by a combination of gravity and turbulence. ISM structure at one scale is therefore linked to structure at other scales.

    • Jonathan D. Henshaw
    • J. M. Diederik Kruijssen
    • Jiayi Sun
    Research
    Nature Astronomy
    Volume: 4, P: 1064-1071