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Inefficient star formation in extremely metal poor galaxies

  • Yong Shi*
  • , Lee Armus
  • , George Helou
  • , Sabrina Stierwalt
  • , Yu Gao
  • , Junzhi Wang
  • , Qiusheng Gu
  • , Zhiyu Zhang
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

The first galaxies contain stars born out of gas with few or no 'metals' (that is, elements heavier than helium). The lack of metals is expected to inhibit efficient gas cooling and star formation(1,2), but this effect has yet to be observed in galaxies with an oxygen abundance (relative to hydrogen) below a tenth of that of the Sun(2-4). Extremely metal poor nearby galaxies may be our best local laboratories for studying in detail the conditions that prevailed in low metallicity galaxies at early epochs. Carbon monoxide emission is unreliable as a tracer of gas at low metallicities(5-7), and while dust has been used to trace gas in low-metallicity galaxies(5,8-10), low spatial resolution in the far-infrared has typically led to large uncertainties(9,10). Here we report spatially resolved infrared observations of two galaxies with oxygen abundances below ten per cent of the solar value, and show that stars formed very inefficiently in seven star-forming clumps in these galaxies. The efficiencies are less than a tenth of those found in normal, metal rich galaxies today, suggesting that star formation may have been very inefficient in the early Universe.

Original languageEnglish
Pages (from-to)335-+
Number of pages13
JournalNature
Volume514
Issue number7522
DOIs
Publication statusPublished - 16 Oct 2014

Keywords / Materials (for Non-textual outputs)

  • CO-TO-H-2 CONVERSION FACTOR
  • LOW-METALLICITY
  • NEARBY GALAXIES
  • FORMATION LAW
  • DUST
  • GAS
  • EMISSION
  • ABUNDANCES
  • SCALES
  • MODEL

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