TY - JOUR
T1 - The Lyα Dependence on Nebular Properties from the HETDEX and MOSDEF Surveys
AU - Chávez Ortiz, Óscar A.
AU - Leung, Gene C.K.
AU - Finkelstein, Steven L.
AU - Davis, Dustin
AU - Sutherland, Ralph S.
AU - Nicholls, David C.
AU - Stephenson, Mabel
AU - Mentuch Cooper, Erin
AU - Bagley, Micaela
AU - Gebhardt, Karl
AU - House, Lindsay R.
AU - Liu, Chenxu
AU - Ciardullo, Robin
AU - Gronwall, Caryl
AU - Hill, Gary J.
AU - Farrow, Daniel
AU - Schneider, Donald P.
N1 - Publisher Copyright:
© 2024. The Author(s). Published by the American Astronomical Society.
PY - 2024/12/1
Y1 - 2024/12/1
N2 - Investigating the impact of galaxy properties on emergent Lyα emission is crucial for reionization studies, given the sensitivity of Lyα to neutral hydrogen. This study presents an analysis of the physical characteristics of 155 star-forming galaxies, 29 with Lyα detected, and 126 with Lyα not detected with Lyα EW < 20 Å, at z = 1.9-3.5, drawn from the MOSFIRE Deep Evolution Field survey, that have overlapping observations from the Hobby-Eberly Telescope Dark Energy Experiment survey. To unravel the interstellar medium (ISM) conditions in our sample, we developed a custom nebular line modeling algorithm based on the MAPPINGS V photoionization model grid and the emcee framework. Combining nebular-based ISM properties with photometry-based global properties, constrained via Bagpipes, we explore distinctions in the stellar and gas properties between Lyα-detected and Lyα-nondetected galaxies. Our analysis reveals statistically significant differences between the two samples in terms of stellar mass and dust attenuation (A V ) at >2σ significance, as determined via a Kolmogorov-Smirnov test. Moreover, there are weaker (≲1σ significance) indications that the ionization parameter and metallicity differ between the two samples. Our results demonstrate that the escape fraction of Lyα ( f esc Ly α ) is inversely correlated with stellar mass, star formation rate, and dust attenuation, while it is positively correlated with the ionization parameter, with significance levels exceeding 2σ. Our findings suggest that the interstellar environments of Lyα-detected galaxies, characterized by low mass, low dust, low gas-phase metallicity, and high ionization parameters, play a pivotal role in promoting the escape of Lyα radiation.
AB - Investigating the impact of galaxy properties on emergent Lyα emission is crucial for reionization studies, given the sensitivity of Lyα to neutral hydrogen. This study presents an analysis of the physical characteristics of 155 star-forming galaxies, 29 with Lyα detected, and 126 with Lyα not detected with Lyα EW < 20 Å, at z = 1.9-3.5, drawn from the MOSFIRE Deep Evolution Field survey, that have overlapping observations from the Hobby-Eberly Telescope Dark Energy Experiment survey. To unravel the interstellar medium (ISM) conditions in our sample, we developed a custom nebular line modeling algorithm based on the MAPPINGS V photoionization model grid and the emcee framework. Combining nebular-based ISM properties with photometry-based global properties, constrained via Bagpipes, we explore distinctions in the stellar and gas properties between Lyα-detected and Lyα-nondetected galaxies. Our analysis reveals statistically significant differences between the two samples in terms of stellar mass and dust attenuation (A V ) at >2σ significance, as determined via a Kolmogorov-Smirnov test. Moreover, there are weaker (≲1σ significance) indications that the ionization parameter and metallicity differ between the two samples. Our results demonstrate that the escape fraction of Lyα ( f esc Ly α ) is inversely correlated with stellar mass, star formation rate, and dust attenuation, while it is positively correlated with the ionization parameter, with significance levels exceeding 2σ. Our findings suggest that the interstellar environments of Lyα-detected galaxies, characterized by low mass, low dust, low gas-phase metallicity, and high ionization parameters, play a pivotal role in promoting the escape of Lyα radiation.
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U2 - 10.3847/1538-4357/ad7a00
DO - 10.3847/1538-4357/ad7a00
M3 - Article
AN - SCOPUS:85211224848
SN - 0004-637X
VL - 977
JO - Astrophysical Journal
JF - Astrophysical Journal
IS - 1
M1 - 107
ER -