Probing the fluctuating Ultra-violet background using the Hubble Frontier Fields
arXiv:1809.01798 · doi:10.1093/mnrasl/sly186
Abstract
In recent years, the rise in the number of Lyman Break Galaxies detected at high redshifts z >= 6 has opened up the possibility of understanding early galaxy formation physics in great detail. In particular, the faint-end slope (alpha) of the Ultra-violet luminosity function (UV LF) of these galaxies is a potential probe of feedback effects that suppress star formation in low mass haloes. In this work, we propose a proof-of-concept calculation for constraining the fluctuating UV background during reionization by constraining alpha in different volumes of the Universe. Because of patchy reionization, different volumes will experience different amount of photo-heating which should lead to a scatter in the measured alpha. Our approach is based on a simple model of the UV LF that is a scaled version of the halo mass function combined with an exponential suppression in the galaxy luminosity at the faint-end because of UV feedback. Although current data is not sufficient to constrain alpha in different fields, we expect that, in the near future, observations of the six lensed Hubble Frontier Fields with the James Webb Space Telescope (JWST) will offer an ideal test of our concept.
Accepted for publication in MNRAS Letters
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- Astraeus II: Quantifying the impact of cosmic variance during the Epoch of Reionization
- UNCOVERing the contribution of black holes to reionization in the JWST era
- Probing the thermal history during reionization using a semi-numerical photon-conserving code SCRIPT
- Constraining the reionization and thermal history of the Universe using a semi-numerical photon-conserving code SCRIPT
- Modelling the star-formation activity and ionizing properties of high-redshift galaxies
- Probing Reionization-Era Galaxies with JWST UV Luminosity Functions and Large-Scale Clustering