z ∼ 2.5-3 Ionizers in the GOODS-N Field

We use deep F275W imaging from the Hubble Deep UV Legacy Survey (HDUV) and G280 grism spectroscopy from the Hubble Space Telescope/WFC3, along with new and archival optical spectra from Keck/DEIMOS, to search for candidate ionizing sources in the GOODS-N field at z ∼ 2.5-3. Spectroscopic identificat...

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Veröffentlicht in:The Astrophysical journal 2018-08, Vol.862 (2), p.142
Hauptverfasser: Jones, L. H., Barger, A. J., Cowie, L. L., Oesch, P., Hu, E. M., Songaila, A., Naidu, R. P.
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Sprache:eng
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Zusammenfassung:We use deep F275W imaging from the Hubble Deep UV Legacy Survey (HDUV) and G280 grism spectroscopy from the Hubble Space Telescope/WFC3, along with new and archival optical spectra from Keck/DEIMOS, to search for candidate ionizing sources in the GOODS-N field at z ∼ 2.5-3. Spectroscopic identification of our UV-selected sources are 99% complete to F275W = 25.5 in the region of the UV imaging, and we identify six potential ionizing galaxies or active galactic nuclei (AGNs) at z ∼ 3. By far the brightest of these is a z = 2.583 AGN that totally dominates the ionizing flux in the region, with a specific ionizing volume emissivity at 912 of erg s−1 Hz−1 Mpc−3. Based on our spectroscopic data, we find that four candidates are contaminated by foreground galaxies at z ∼ 0.5-0.7. At erg s−1 Hz−1 Mpc−3, the remaining candidate galaxy's contribution to the ionizing background lies well below the flux required to ionize the intergalactic medium at z ∼ 2.5-3, consistent with previous observations that show that AGNs provide the bulk of the ionizing background at these redshifts.
ISSN:0004-637X
1538-4357
DOI:10.3847/1538-4357/aacef8