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MIDIS: Strong (Hβ+[O iii]) and Hα Emitters at Redshift z ≃ 7-8 Unveiled with JWST NIRCam and MIRI Imaging in the Hubble eXtreme Deep Field

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posted on 2023-09-21, 09:05 authored by P Rinaldi, KI Caputi, L Costantin, S Gillman, E Iani, PG Pérez-González, G Östlin, L Colina, TR Greve, HU Noorgard-Nielsen, GS Wright, A Alonso-Herrero, J Álvarez-Márquez, A Eckart, M García-Marín, J Hjorth, O Ilbert, S Kendrew, A Labiano, O Le Fèvre, J Pye, T Tikkanen, F Walter, P van der Werf, M Ward, M Annunziatella, R Azzollini, A Bik, L Boogaard, SEI Bosman, AC Gómez, I Jermann, D Langeroodi, J Melinder, RA Meyer, T Moutard, F Peissker, M Topinka, E van Dishoeck, M Güdel, T Henning, PO Lagage, T Ray, B Vandenbussche, C Waelkens, R Navarro-Carrera, V Kokorev

We make use of JWST medium-band and broadband NIRCam imaging, along with ultradeep MIRI 5.6 μm imaging, in the Hubble eXtreme Deep Field to identify prominent line emitters at z ≃ 7-8. Out of a total of 58 galaxies at z ≃ 7-8, we find 18 robust candidates (≃31%) for (Hβ + [O iii]) emitters, based on their enhanced fluxes in the F430M and F444W filters, with EW0(Hβ +[O iii]) ≃87-2100 Å. Among these emitters, 16 lie in the MIRI coverage area and 12 exhibit a clear flux excess at 5.6 μm, indicating the simultaneous presence of a prominent Hα emission line with EW0(Hα) ≃200-3000 Å. This is the first time that Hα emission can be detected in individual galaxies at z > 7. The Hα line, when present, allows us to separate the contributions of Hβ and [O iii] to the (Hβ +[O iii]) complex and derive Hα-based star formation rates (SFRs). We find that in most cases [O iii]/Hβ > 1. Instead, two galaxies have [O iii]/Hβ < 1, indicating that the NIRCam flux excess is mainly driven by Hβ. Most prominent line emitters are very young starbursts or galaxies on their way to/from the starburst cloud. They make for a cosmic SFR density log 10 ( ρ SFR H α / ( M ⊙ yr − 1 Mpc − 3 ) ) ≃ − 2.35 , which is about a quarter of the total value ( log 10 ( ρ SFR tot / ( M ⊙ yr − 1 Mpc − 3 ) ) ≃ − 1.76 ) at z ≃ 7-8. Therefore, the strong Hα emitters likely had a significant role in reionization.

History

Author affiliation

School of Physics & Astronomy, University of Leicester

Version

  • VoR (Version of Record)

Published in

Astrophysical Journal

Volume

952

Issue

2

Pagination

143

Publisher

American Astronomical Society

issn

0004-637X

eissn

1538-4357

Copyright date

2023

Available date

2023-09-21

Language

en

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