SIMBAD references

2003ApJ...596..817D - Astrophys. J., 596, 817-829 (2003/October-3)

Fe II/Mg II emission-line ratio in high-redshift quasars.

DIETRICH M., HAMANN F., APPENZELLER I. and VESTERGAARD M.

Abstract (from CDS):

We present results of the analysis of near-infrared spectroscopic observations of six high-redshift quasars (z≳4), emphasizing the measurement of the ultraviolet Fe II/Mg II emission-line strength to estimate the beginning of intense star formation in the early universe. To investigate the evolution of the Fe II/Mg II ratio over a wider range in cosmic time, we measured this ratio for composite quasar spectra that cover a redshift range 0≲z≲5 with nearly constant luminosity, as well as for those that span ∼6 orders of magnitude in luminosity. A detailed comparison of the high-redshift quasar spectra with those of low-redshift quasars with comparable luminosity shows essentially the same Fe II/Mg II emission ratios and very similar continuum and line spectral properties, i.e., a lack of evolution of the relative iron-to-magnesium abundance of the gas in bright quasars since z≃5. Current nucleosynthesis and stellar evolution models predict that α-elements such as magnesium are produced in massive stars ending in Type II supernovae, while iron is formed predominantly in Type Ia supernovae with intermediate-mass progenitors. This results in an iron enrichment delay of ∼0.2-0.6 Gyr. We conclude that intense star formation activity in the host galaxies of z≳4 quasars must have started already at an epoch corresponding to zf≃6-9, when the age of the universe was ∼0.5 Gyr (H0=72 km/s/Mpc, ΩM=0.3, ΩΛ=0.7). This epoch corresponds well to the reionization era of the universe.

Abstract Copyright:

Journal keyword(s): Galaxies: Abundances - Galaxies: High-Redshift - Galaxies: Quasars: Emission Lines - Galaxies: Quasars: General

Simbad objects: 24

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