English

Lyman-Alpha Escape from Low-Mass, Compact, High-Redshift Galaxies

Astrophysics of Galaxies 2022-10-05 v1

Abstract

We investigate the effects of stellar populations and sizes on Lyα\alpha escape in 27 spectroscopically confirmed and 35 photometric Lyman-Alpha Emitters (LAEs) at z \approx 2.65 in seven fields of the Bo\"otes region of the NOAO Deep Wide-Field Survey. We use deep HSTHST/WFC3 imaging to supplement ground-based observations and infer key galaxy properties. Compared to typical star-forming galaxies (SFGs) at similar redshifts, the LAEs are less massive (M107109 MM_{\star} \approx 10^{7} - 10^{9}~M_{\odot}), younger (ages \lesssim 1 Gyr), smaller (re<r_{e} < 1 kpc), less dust-attenuated (E(B-V) \le 0.26 mag), but have comparable star-formation-rates (SFRs 1100 Myr1\approx 1 - 100~M_{\odot} {\rm yr^{-1}}). Some of the LAEs in the sample may be very young galaxies having low nebular metallicities (Zneb0.2Z{\rm Z_{neb} \lesssim 0.2 Z_{\odot}}) and/or high ionization parameters (log(U)2.4\log{(\rm U)} \gtrsim -2.4). Motivated by previous studies, we examine the effects of the concentration of star formation and gravitational potential on Lyα\alpha escape, by computing star-formation-rate surface density, ΣSFR\Sigma_{\rm SFR} and specific star-formation-rate surface density, ΣsSFR\Sigma_{\rm sSFR}. For a given ΣSFR\Sigma_{\rm SFR}, the Lyα\alpha escape fraction is higher for LAEs with lower stellar masses. LAEs have higher ΣsSFR\Sigma_{\rm sSFR} on average compared to SFGs. Our results suggest that compact star formation in a low gravitational potential yields conditions amenable to the escape of Lyα\alpha photons. These results have important implications for the physics of Lyα\alpha radiative transfer and for the type of galaxies that may contribute significantly to cosmic reionization.

Keywords

Cite

@article{arxiv.2207.14303,
  title  = {Lyman-Alpha Escape from Low-Mass, Compact, High-Redshift Galaxies},
  author = {Ragadeepika Pucha and Naveen A. Reddy and Arjun Dey and Stéphanie Juneau and Kyoung-Soo Lee and Moire K. M. Prescott and Irene Shivaei and Sungryong Hong},
  journal= {arXiv preprint arXiv:2207.14303},
  year   = {2022}
}

Comments

36 pages, 15 figures; Accepted for publication in The Astronomical Journal

R2 v1 2026-06-25T01:18:52.783Z