The Lyman Alpha Reference Sample XV. Relating Ionised Gas Kinematics with Lyman-$α$ observables

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Main Authors: Herenz, E. C., Schaible, A., Laursen, P., Runnholm, A., Melinder, J., Reste, A. Le, Hayes, M. J., Östlin, G., Cannon, J., Micheva, G., Roth, M., Saha, K.
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Published: 2024
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author Herenz, E. C.
Schaible, A.
Laursen, P.
Runnholm, A.
Melinder, J.
Reste, A. Le
Hayes, M. J.
Östlin, G.
Cannon, J.
Micheva, G.
Roth, M.
Saha, K.
author_facet Herenz, E. C.
Schaible, A.
Laursen, P.
Runnholm, A.
Melinder, J.
Reste, A. Le
Hayes, M. J.
Östlin, G.
Cannon, J.
Micheva, G.
Roth, M.
Saha, K.
contents Gas kinematics affect the radiative transfer and escape of hydrogen Lyman-$α$ (Ly$α$) emission from galaxies. We investigate this interplay empirically by relating the ionised gas kinematics of 42 galaxies in the extended Ly$α$ Reference Sample with their Ly$α$ escape fractions, $f_\rm{esc}$, Ly$α$ equivalent widths, $\rm{EW}_\rm{Lyα}$, and Ly$α$ luminosities, $L_\rm{Lyα}$. To this aim we use PMAS integral-field spectroscopic observations of the Balmer-$α$ line. We calculate shearing velocities, $v_\rm{shear}$, and intrinsic velocity dispersions, $σ_0^\rm{obs}$ (empirically corrected for beam-smearing effects), as global kinematical measures for each galaxy. The sample is characterised by highly turbulent motions and more than half of the sample shows dispersion dominated kinematics. We uncover clear trends between Ly$α$ observables and global kinematical statistics. We discuss statistically the importance of $v_\rm{shear}$, $σ_0^\rm{obs}$, and $v_\rm{shear}/σ_0^\rm{obs}$ for regulating the Ly$α$ observables in comparison to other galaxy parameters. It emerges that $σ_0^\rm{obs}$ is the dominating parameter for $\rm{EW}_\rm{Lyα}$ and that is as important as nebular extinction, gas covering fraction, and ionising photon production efficiency in regulating $f_\rm{esc}$. A simple scenario where the starburst age is simultaneously regulating turbulence, $\rm{EW}_\rm{Lyα}$, and $f_\rm{esc}$ does not find support by our observations. However, we show that the small scale distribution of dust appears to be influenced by turbulence in some galaxies. In support of our observational result we discuss how turbulence is theoretically expected to play a significant role in modulating $f_\rm{esc}$. (abridged)
format Preprint
id arxiv_https___arxiv_org_abs_2406_03956
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Lyman Alpha Reference Sample XV. Relating Ionised Gas Kinematics with Lyman-$α$ observables
Herenz, E. C.
Schaible, A.
Laursen, P.
Runnholm, A.
Melinder, J.
Reste, A. Le
Hayes, M. J.
Östlin, G.
Cannon, J.
Micheva, G.
Roth, M.
Saha, K.
Astrophysics of Galaxies
Gas kinematics affect the radiative transfer and escape of hydrogen Lyman-$α$ (Ly$α$) emission from galaxies. We investigate this interplay empirically by relating the ionised gas kinematics of 42 galaxies in the extended Ly$α$ Reference Sample with their Ly$α$ escape fractions, $f_\rm{esc}$, Ly$α$ equivalent widths, $\rm{EW}_\rm{Lyα}$, and Ly$α$ luminosities, $L_\rm{Lyα}$. To this aim we use PMAS integral-field spectroscopic observations of the Balmer-$α$ line. We calculate shearing velocities, $v_\rm{shear}$, and intrinsic velocity dispersions, $σ_0^\rm{obs}$ (empirically corrected for beam-smearing effects), as global kinematical measures for each galaxy. The sample is characterised by highly turbulent motions and more than half of the sample shows dispersion dominated kinematics. We uncover clear trends between Ly$α$ observables and global kinematical statistics. We discuss statistically the importance of $v_\rm{shear}$, $σ_0^\rm{obs}$, and $v_\rm{shear}/σ_0^\rm{obs}$ for regulating the Ly$α$ observables in comparison to other galaxy parameters. It emerges that $σ_0^\rm{obs}$ is the dominating parameter for $\rm{EW}_\rm{Lyα}$ and that is as important as nebular extinction, gas covering fraction, and ionising photon production efficiency in regulating $f_\rm{esc}$. A simple scenario where the starburst age is simultaneously regulating turbulence, $\rm{EW}_\rm{Lyα}$, and $f_\rm{esc}$ does not find support by our observations. However, we show that the small scale distribution of dust appears to be influenced by turbulence in some galaxies. In support of our observational result we discuss how turbulence is theoretically expected to play a significant role in modulating $f_\rm{esc}$. (abridged)
title The Lyman Alpha Reference Sample XV. Relating Ionised Gas Kinematics with Lyman-$α$ observables
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2406.03956