Narrowband Lyman-Continuum Imaging of Galaxies at z ~ 2.85
Robin E. Mostardi, Alice E. Shapley, Daniel B. Nestor, Charles C., Steidel, Naveen A. Reddy, and Ryan F. Trainor

TL;DR
This study investigates the escape of ionizing radiation from star-forming galaxies at z~2.85 using narrowband imaging, revealing low escape fractions and suggesting an orientation-dependent escape mechanism in a patchy interstellar medium.
Contribution
First measurement of LyC escape fractions in galaxies at z~2.85 using a custom narrowband filter, providing new constraints on ionizing radiation escape and galaxy properties.
Findings
Average LyC escape fraction for LBGs is 1-2%.
Average LyC escape fraction for LAEs is 5-15%.
Detected LyC emission shows spatial offsets and blue colors, challenging current models.
Abstract
We present results from a survey for z~2.85 Lyman-Continuum (LyC) emission in the HS1549+1933 field and place constraints on the amount of ionizing radiation escaping from star-forming galaxies. Using a custom narrowband filter (NB3420) tuned to wavelengths just below the Lyman limit at z>=2.82, we probe the LyC spectral region of 49 Lyman break galaxies (LBGs) and 91 Lya-emitters (LAEs) spectroscopically confirmed at z>=2.82. Four LBGs and seven LAEs are detected in NB3420. Using V-band data probing the rest-frame non-ionizing UV, we observe that many NB3420-detected galaxies exhibit spatial offsets between their LyC and non-ionizing UV emission and are characterized by extremely blue NB3420-V colors, corresponding to low ratios of non-ionizing to ionizing radiation (F_UV/F_LyC) that are in tension with current stellar population synthesis models. We measure average values of…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Galaxies: Formation, Evolution, Phenomena · Astrophysical Phenomena and Observations
