_version_ 1866910510222409728
author Maiolino, Roberto
Uebler, Hannah
Perna, Michele
Scholtz, Jan
D'Eugenio, Francesco
Witten, Callum
Laporte, Nicolas
Witstok, Joris
Carniani, Stefano
Tacchella, Sandro
Baker, William
Arribas, Santiago
Nakajima, Kimihiko
Eisenstein, Daniel
Bunker, Andrew
Charlot, Stephane
Cresci, Giovanni
Curti, Mirko
Curtis-Lake, Emma
de Graaff, Anna
Ji, Zhiyuan
Johnson, Benjamin D.
Kumari, Nimisha
Looser, Tobias J.
Maseda, Michael
Nelson, Erica
Robertson, Brant
Del Pino, Bruno Rodriguez
Sandles, Lester
Simmonds, Charlotte
Smit, Renske
Sun, Fengwu
Venturi, Giacomo
Williams, Christina
Willmer, Christopher
author_facet Maiolino, Roberto
Uebler, Hannah
Perna, Michele
Scholtz, Jan
D'Eugenio, Francesco
Witten, Callum
Laporte, Nicolas
Witstok, Joris
Carniani, Stefano
Tacchella, Sandro
Baker, William
Arribas, Santiago
Nakajima, Kimihiko
Eisenstein, Daniel
Bunker, Andrew
Charlot, Stephane
Cresci, Giovanni
Curti, Mirko
Curtis-Lake, Emma
de Graaff, Anna
Ji, Zhiyuan
Johnson, Benjamin D.
Kumari, Nimisha
Looser, Tobias J.
Maseda, Michael
Nelson, Erica
Robertson, Brant
Del Pino, Bruno Rodriguez
Sandles, Lester
Simmonds, Charlotte
Smit, Renske
Sun, Fengwu
Venturi, Giacomo
Williams, Christina
Willmer, Christopher
contents Finding the first generation of stars formed out of pristine gas in the early Universe, known as Population III (PopIII) stars, is one of the most important goals of modern astrophysics. Recent models have suggested that PopIII stars may form in pockets of pristine gas in the halo of more evolved galaxies. We present NIRSpec integral field spectroscopy and micro-shutter array spectroscopic observations of the region around GN-z11, an exceptionally luminous galaxy at z=10.6, that reveal a greater than 5 sigma detection of a feature consistent with being HeII1640 emission at the redshift of GN-z11. The very high equivalent width of the putative HeII emission in this clump (log(EW_rest(HeII)/A) = 1.79) and a lack of metal lines can be explained in terms of photoionisation by PopIII stars, while photoionisation by PopII stars is inconsistent with the data. The high equivalent width would also indicate that the putative PopIII stars likely have an initial mass function with an upper cutoff reaching at least 500 Msun. The PopIII bolometric luminosity inferred from the HeII line would be 7 x 10^9 Lsun, which would imply a total stellar mass formed in the burst of about 2 x 10^5 Msun. We find that photoionisation by the active galactic nucleus (AGN) in GN-z11 cannot account for the HeII luminosity observed in the clump but can potentially be responsible for an additional HeII emission observed closer to GN-z11. We also consider the possibility of in situ photoionisation by an accreting direct collapse black hole hosted by the HeII clump. We find that this scenario is less favoured, but it remains a possible alternative interpretation. We also report the detection of a Ly-alpha halo stemming out of GN-z11 and extending out to about 2 kpc as well as resolved funnel-shaped CIII emission likely tracing the ionisation cone of the AGN.
format Preprint
id arxiv_https___arxiv_org_abs_2306_00953
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle JWST-JADES. Possible Population III signatures at z=10.6 in the halo of GN-z11
Maiolino, Roberto
Uebler, Hannah
Perna, Michele
Scholtz, Jan
D'Eugenio, Francesco
Witten, Callum
Laporte, Nicolas
Witstok, Joris
Carniani, Stefano
Tacchella, Sandro
Baker, William
Arribas, Santiago
Nakajima, Kimihiko
Eisenstein, Daniel
Bunker, Andrew
Charlot, Stephane
Cresci, Giovanni
Curti, Mirko
Curtis-Lake, Emma
de Graaff, Anna
Ji, Zhiyuan
Johnson, Benjamin D.
Kumari, Nimisha
Looser, Tobias J.
Maseda, Michael
Nelson, Erica
Robertson, Brant
Del Pino, Bruno Rodriguez
Sandles, Lester
Simmonds, Charlotte
Smit, Renske
Sun, Fengwu
Venturi, Giacomo
Williams, Christina
Willmer, Christopher
Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
Finding the first generation of stars formed out of pristine gas in the early Universe, known as Population III (PopIII) stars, is one of the most important goals of modern astrophysics. Recent models have suggested that PopIII stars may form in pockets of pristine gas in the halo of more evolved galaxies. We present NIRSpec integral field spectroscopy and micro-shutter array spectroscopic observations of the region around GN-z11, an exceptionally luminous galaxy at z=10.6, that reveal a greater than 5 sigma detection of a feature consistent with being HeII1640 emission at the redshift of GN-z11. The very high equivalent width of the putative HeII emission in this clump (log(EW_rest(HeII)/A) = 1.79) and a lack of metal lines can be explained in terms of photoionisation by PopIII stars, while photoionisation by PopII stars is inconsistent with the data. The high equivalent width would also indicate that the putative PopIII stars likely have an initial mass function with an upper cutoff reaching at least 500 Msun. The PopIII bolometric luminosity inferred from the HeII line would be 7 x 10^9 Lsun, which would imply a total stellar mass formed in the burst of about 2 x 10^5 Msun. We find that photoionisation by the active galactic nucleus (AGN) in GN-z11 cannot account for the HeII luminosity observed in the clump but can potentially be responsible for an additional HeII emission observed closer to GN-z11. We also consider the possibility of in situ photoionisation by an accreting direct collapse black hole hosted by the HeII clump. We find that this scenario is less favoured, but it remains a possible alternative interpretation. We also report the detection of a Ly-alpha halo stemming out of GN-z11 and extending out to about 2 kpc as well as resolved funnel-shaped CIII emission likely tracing the ionisation cone of the AGN.
title JWST-JADES. Possible Population III signatures at z=10.6 in the halo of GN-z11
topic Astrophysics of Galaxies
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2306.00953