Properties of five z~0.3-0.4 confirmed LyC leakers: VLT/XShooter observations
N. G. Guseva (1), Y. I. Izotov (1), D. Schaerer (2, 3), J. M. V., Vilchez (4), R. Amorin (5, 6), E. Perez-Montero (4), J. Iglesias-Paramo (4, and 7), A. Verhamme (2), C. Kehrig (4), L. Ramambason (8) ((1) Bogolyubov, Institute for Theoretical Physics

TL;DR
This study uses VLT/XShooter observations to analyze the physical properties of five confirmed LyC leakers at z~0.3-0.4, revealing high electron densities, ionization parameters, and specific emission line diagnostics linked to LyC leakage.
Contribution
It provides new detailed spectral analysis of low-z LyC leakers, confirming diagnostic methods and characterizing their physical conditions related to LyC escape.
Findings
High electron densities (~400 cm^-3) in LyC leakers.
Effective HeI emission line diagnostics for identifying LyC leakers.
Low neutral hydrogen column densities facilitate LyC radiation leakage.
Abstract
Using new VLT/XShooter spectral observations we analyse the physical properties of five z~0.3-0.4 confirmed LyC leakers. Strong resonant MgII 2796,2803 emission lines (I(2796,2803)/I(Hbeta)=10-38 per cent) and non-resonant FeII* 2612,2626 emission lines are observed in spectra of five and three galaxies, respectively. We find high electron densities Ne~400cm-3, significantly higher than in typical low-z, but comparable to those measured in z~2-3 star-forming galaxies. The galaxies have a mean value of logN/O=-1.16, close to the maximum values found for star-forming (SF) galaxies in the metallicity range of 12+logO/H=7.7-8.1. All 11 low-z LyC emitting galaxies found by Izotov et al. (2016, 2018), including the ones considered in the present study, are characterised by high EW(Hbeta)~200-400A, high ionisation parameter (log(U)=-2.5 to -1.7), high average ionising photon production…
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