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The Physical Conditions of Emission-line Galaxies at Cosmic Dawn from JWST/NIRSpec Spectroscopy in the SMACS 0723 Early Release Observations

Authors :
Jonathan R. Trump
Pablo Arrabal Haro
Raymond C. Simons
Bren E. Backhaus
Ricardo O. Amorín
Mark Dickinson
Vital Fernández
Casey Papovich
David C. Nicholls
Lisa J. Kewley
Samantha W. Brunker
John J. Salzer
Stephen M. Wilkins
Omar Almaini
Micaela B. Bagley
Danielle A. Berg
Rachana Bhatawdekar
Laura Bisigello
Véronique Buat
Denis Burgarella
Antonello Calabrò
Caitlin M. Casey
Laure Ciesla
Nikko J. Cleri
Justin W. Cole
M. C. Cooper
Asantha R. Cooray
Luca Costantin
Darren Croton
Henry C. Ferguson
Steven L. Finkelstein
Seiji Fujimoto
Jonathan P. Gardner
Eric Gawiser
Mauro Giavalisco
Andrea Grazian
Norman A. Grogin
Nimish P. Hathi
Michaela Hirschmann
Benne W. Holwerda
Marc Huertas-Company
Taylor A. Hutchison
Shardha Jogee
Stéphanie Juneau
Intae Jung
Jeyhan S. Kartaltepe
Allison Kirkpatrick
Dale D. Kocevski
Anton M. Koekemoer
Jennifer M. Lotz
Ray A. Lucas
Benjamin Magnelli
Jasleen Matharu
Pablo G. Pérez-González
Nor Pirzkal
Marc Rafelski
Caitlin Rose
Lise-Marie Seillé
Rachel S. Somerville
Amber N. Straughn
Sandro Tacchella
Brittany N. Vanderhoof
Benjamin J. Weiner
Stijn Wuyts
L. Y. Aaron Yung
Jorge A. Zavala
Source :
The Astrophysical Journal, Vol 945, Iss 1, p 35 (2023)
Publication Year :
2023
Publisher :
IOP Publishing, 2023.

Abstract

We present rest-frame optical emission-line flux ratio measurements for five z > 5 galaxies observed by the James Webb Space Telescope Near-Infared Spectrograph (NIRSpec) in the SMACS 0723 Early Release Observations. We add several quality-control and post-processing steps to the NIRSpec pipeline reduction products in order to ensure reliable relative flux calibration of emission lines that are closely separated in wavelength, despite the uncertain absolute spectrophotometry of the current version of the reductions. Compared to z ∼ 3 galaxies in the literature, the z > 5 galaxies have similar [O iii ] λ 5008/H β ratios, similar [O iii ] λ 4364/H γ ratios, and higher (∼0.5 dex) [Ne III ] λ 3870/[O II ] λ 3728 ratios. We compare the observations to MAPPINGS V photoionization models and find that the measured [Ne III ] λ 3870/[O II ] λ 3728, [O iii ] λ 4364/H γ , and [O iii ] λ 5008/H β emission-line ratios are consistent with an interstellar medium (ISM) that has very high ionization ( $\mathrm{log}(Q)\simeq 8-9$ , units of cm s ^−1 ), low metallicity ( Z / Z _⊙ ≲ 0.2), and very high pressure ( $\mathrm{log}(P/k)\simeq 8-9$ , units of cm ^−3 ). The combination of [O iii ] λ 4364/H γ and [O iii ] λ (4960 + 5008)/H β line ratios indicate very high electron temperatures of $4.1\lt \mathrm{log}({T}_{e}/{\rm{K}})\lt 4.4$ , further implying metallicities of Z / Z _⊙ ≲ 0.2 with the application of low-redshift calibrations for “ T _e -based” metallicities. These observations represent a tantalizing new view of the physical conditions of the ISM in galaxies at cosmic dawn.

Details

Language :
English
ISSN :
15384357
Volume :
945
Issue :
1
Database :
Directory of Open Access Journals
Journal :
The Astrophysical Journal
Publication Type :
Academic Journal
Accession number :
edsdoj.1972d8a48574c3a86ce0ac50db69d1a
Document Type :
article
Full Text :
https://doi.org/10.3847/1538-4357/acba8a