2012ApJ...744...91B


Query : 2012ApJ...744...91B

2012ApJ...744...91B - Astrophys. J., 744, 91 (2012/January-2)

Iron and α-element production in the first one billion years after the Big Bang.

BECKER G.D., SARGENT W.L.W., RAUCH M. and CARSWELL R.F.

Abstract (from CDS):

We present measurements of carbon, oxygen, silicon, and iron in quasar absorption systems existing when the universe was roughly one billion years old. We measure column densities in nine low-ionization systems at 4.7 < z < 6.3 using Keck, Magellan, and Very Large Telescope optical and near-infrared spectra with moderate to high resolution. The column density ratios among C II, O I, Si II, and Fe II are nearly identical to sub-damped Lyα systems (sub-DLAs) and metal-poor ([M/H] ≤ -1) DLAs at lower redshifts, with no significant evolution over 2 ≲ z ≲ 6. The estimated intrinsic scatter in the ratio of any two elements is also small, with a typical rms deviation of ≲ 0.1 dex. These facts suggest that dust depletion and ionization effects are minimal in our z > 4.7 systems, as in the lower-redshift DLAs, and that the column density ratios are close to the intrinsic relative element abundances. The abundances in our z > 4.7 systems are therefore likely to represent the typical integrated yields from stellar populations within the first gigayear of cosmic history. Due to the time limit imposed by the age of the universe at these redshifts, our measurements thus place direct constraints on the metal production of massive stars, including iron yields of prompt supernovae. The lack of redshift evolution further suggests that the metal inventories of most metal-poor absorption systems at z ≳ 2 are also dominated by massive stars, with minimal contributions from delayed Type Ia supernovae or winds from asymptotic giant branch stars. The relative abundances in our systems broadly agree with those in very metal-poor, non-carbon-enhanced Galactic halo stars. This is consistent with the picture in which present-day metal-poor stars were potentially formed as early as one billion years after the big bang.

Abstract Copyright:

Journal keyword(s): cosmology: observations - early Universe - intergalactic medium - quasars: absorption lines - stars: abundances

Simbad objects: 7

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Number of rows : 7
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 QSO J0040-0915 BLL 00 40 54.6575670840 -09 15 26.833615164   26.46 22.40     ~ 58 0
2 QSO J0231-0728 QSO 02 31 37.6463945454 -07 28 54.550661965   25.25 23.17     ~ 72 0
3 SDSS J081827.40+172251.8 QSO 08 18 27.399 +17 22 51.83   25.14 24.42     ~ 69 0
4 SDSS J114816.64+525150.3 QSO 11 48 16.647 +52 51 50.31   25.73 25.04     ~ 455 0
5 QSO J1208+0010 QSO 12 08 23.82 +00 10 27.8     20.79     ~ 36 0
6 BPS CS 22892-0052 Pe* 22 17 01.6558764360 -16 39 27.051026544   14.03 13.20 13.06 12.19 KIIvw 449 0
7 HE 2323-0256 Pe* 23 26 29.8073738880 -02 39 58.036383180   15.12 14.36   13.358 CEMP-no 180 0

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