4.7 Article

The history and morphology of helium reionization

期刊

ASTROPHYSICAL JOURNAL
卷 681, 期 1, 页码 1-17

出版社

IOP PUBLISHING LTD
DOI: 10.1086/588546

关键词

cosmology : theory; intergalactic medium; quasars : general

资金

  1. Division Of Astronomical Sciences
  2. Direct For Mathematical & Physical Scien [0829737] Funding Source: National Science Foundation

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A variety of observations now indicate that intergalactic helium was fully ionized by z similar to 3. The most recent measurements of the high-redshift quasar luminosity function imply that these sources had produced at least similar to 2.5 ionizing photons per helium atom by that time, consistent with a picture in which the known quasar population drives He II reionization. Here we describe the distribution of ionized and neutral helium gas during this era. Because the sources were rare and bright ( with the photon budget dominated by quasars with luminosities L greater than or similar to L-*), random fluctuations in the quasar population determined the morphology of ionized gas when the global ionized fraction (x) over bar (i) xi was small, with the typical radius R-c of a He III bubble similar to 15-20 comoving Mpc. Only when (x) over bar (i) greater than or similar to 0.5 did the large- scale clustering of the quasars drive the characteristic size of ionized regions above this value. Still later, when (x) over bar (i) greater than or similar to 0.75, most ionizing photons were consumed by dense, recombining systems before they reached the edge of their source's ionized surroundings, halting the bubble growth when R-c similar to 35-40 Mpc. These phases are qualitatively similar to those in hydrogen reionization, but the rarity of the sources makes the early stochastic phase much more important. Moreover, the well-known characteristics of the z =3 intergalactic medium allow a much more robust description of the late phase in which recombinations dominate.

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