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arXiv:1711.10497·v3·Cosmology and Nongalactic Astrophysics

ETHOS -- an effective theory of structure formation: predictions for the high-redshift Universe -- abundance of galaxies and reionization

Mark R. Lovell (1,2,3) · Jesús Zavala (1) · Mark Vogelsberger (4) · Xuejian Shen (4) · Francis-Yan Cyr-Racine (5) · Christoph Pfrommer (6) · Kris Sigurdson (7) · Michael Boylan-Kolchin (8) · Annalisa Pillepich (3) ((1) University of Iceland, (2) Durham, (3) MPIA, (4) MIT, (5) Harvard, (6) AIP, (7) UBC, (8) UT Austin)

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Abstract

We contrast predictions for the high-redshift galaxy population and reionization history between cold dark matter (CDM) and an alternative self-interacting dark matter model based on the recently developed ETHOS framework that alleviates the small-scale CDM challenges within the Local Group. We perform the highest resolution hydrodynamical cosmological simulations (a 36~Mpc volume with gas cell mass of and minimum gas softening of ~pc) within ETHOS to date -- plus a CDM counterpart -- to quantify the abundance of galaxies at high redshift and their impact on reionization. We find that ETHOS predicts galaxies with higher ultraviolet (UV) luminosities than their CDM counterparts and a faster build-up of the faint end of the UV luminosity function. These effects, however, make the optical depth to reionization less sensitive to the power spectrum cut-off: the ETHOS model differs from the CDM value by only 10 per cent and is consistent with Planck limits if the effective escape fraction of UV photons is 0.1-0.5. We conclude that current observations of high-redshift luminosity functions cannot differentiate between ETHOS and CDM models, but deep JWST surveys of strongly-lensed, inherently faint galaxies have the potential to test non-CDM models that offer attractive solutions to CDM's Local Group problems.

Comments: 14 pages, 8 figures, version accepted for MNRAS publication. Please contact lovell@hi.is with any comments

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