English

Deciphering Lyman-$\alpha$ Emission Deep into the Epoch of Reionisation

Astrophysics of Galaxies 2024-01-23 v2

Abstract

During the epoch of reionisation the first galaxies were enshrouded in pristine neutral gas, with one of the brightest emission lines in star-forming galaxies, Lyman-α\alpha (Lyα\alpha), expected to remain undetected until the Universe became ionised. Providing an explanation for the surprising detection of Lyα\alpha in these early galaxies is a major challenge for extra-galactic studies. Recent JWST observations have reignited the debate on whether residence in an overdensity of galaxies is a it sufficient and necessary condition for Lyα\alpha to escape. Here, we take unique advantage of both high-resolution and high-sensitivity images from the JWST instrument NIRCam to reveal that all galaxies in a sample of z>7 Lyα\alpha emitters have close companions. We exploit novel on-the-fly radiative transfer magnetohydrodynamical simulations with cosmic ray feedback to show that galaxies with frequent mergers have very bursty star formation which drives episodes of high intrinsic Lyα\alpha emission and facilitates the escape of Lyα\alpha photons along channels cleared of neutral gas. We conclude that the rapid build up of stellar mass through mergers presents a compelling solution to the long-standing puzzle of the detection of Lyα\alpha emission deep into the epoch of reionisation.

Keywords

Cite

@article{arxiv.2303.16225,
  title  = {Deciphering Lyman-$\alpha$ Emission Deep into the Epoch of Reionisation},
  author = {Callum Witten and Nicolas Laporte and Sergio Martin-Alvarez and Debora Sijacki and Yuxuan Yuan and Martin G. Haehnelt and William M. Baker and James S. Dunlop and Richard S. Ellis and Norman A. Grogin and Garth Illingworth and Harley Katz and Anton M. Koekemoer and Daniel Magee and Roberto Maiolino and William McClymont and Pablo G. Pérez-González and David Puskás and Guido Roberts-Borsani and Paola Santini and Charlotte Simmonds},
  journal= {arXiv preprint arXiv:2303.16225},
  year   = {2024}
}

Comments

Published in Nature Astronomy. 45 pages, 9 figures, 2 tables