English

The ionising photon production efficiency at z~6 for Lyman-alpha emitters using JEMS and MUSE

Astrophysics of Galaxies 2023-06-28 v2

Abstract

We study the ionising photon production efficiency at the end of the Epoch of Reionisation (z5.46.6z \sim 5.4 - 6.6) for a sample of 30 Lyman-α\alpha emitters. This is a crucial quantity to infer the ionising photon budget of the Universe. These objects were selected to have reliable spectroscopic redshifts, assigned based on the profile of their Lyman-α\alpha emission line, detected in the MUSE deep fields. We exploit medium-band observations from the JWST extragalactic medium band survey (JEMS) to find the flux excess corresponding to the redshifted \ha\ emission line. We estimate the ultra-violet (UV) luminosity by fitting the full JEMS photometry, along with several HST photometric points, with \texttt{Prospector}. We find a median UV continuum slope of β=2.090.21+0.23\beta = -2.09^{+0.23}_{-0.21} for the sample, indicating young stellar populations with little-to-no dust attenuation. Supported by this, we derive ξion,0\xi_{ion,0} with no dust attenuation and find a median value of logξion,0Hz erg1=25.440.15+0.21\frac{\xi_{ion,0}}{\text{Hz erg}^{-1}} = 25.44^{+0.21}_{-0.15}. If we perform dust attenuation corrections and assume a Calzetti attenuation law, our values are lowered by 0.1\sim 0.1 dex. Our results suggest Lyman-α\alpha emitters at the Epoch of Reionisation have enhanced ξion,0\xi_{ion,0} compared to previous estimations from literature, in particular, when compared to the non-Lyman-α\alpha emitting population. This initial study provides a promising outlook on the characterisation of ionising photon production in the early Universe. In the future, a more extensive study will be performed on the entire dataset provided by the JWST Advanced Deep Extragalactic Survey (JADES). Thus, for the first time, allowing us to place constraints on the wider galaxy populations driving reionisation.

Keywords

Cite

@article{arxiv.2303.07931,
  title  = {The ionising photon production efficiency at z~6 for Lyman-alpha emitters using JEMS and MUSE},
  author = {Charlotte Simmonds and Sandro Tacchella and Michael V. Maseda and Christina Williams and William M. Baker and Callum Witten and Benjamin D. Johnson and Brant Robertson and Aayush Saxena and Fengwu Sun and Joris Witstok and Rachana Bhatawdekar and Kristan Boyett and Andrew J. Bunker and Stephane Charlot and Emma Curtis-Lake and Eiichi Egami and Daniel J. Eisenstein and Zhiyuan Ji and Roberto Maiolino and Lester Sandles and Renske Smit and Hannah Übler and Chris Willott},
  journal= {arXiv preprint arXiv:2303.07931},
  year   = {2023}
}

Comments

11 pages, 6 figures in main paper (20 pages in total, 29 figures in appendix). Submitted to MNRAS. Replaced after first iteration of referee's comments