Carbon and Nitrogen Abundance Ratio In the Broad Line Region of Tidal Disruption Events
Chenwei Yang, Tinggui Wang, Gary J.Ferland, Liming Dou, Hongyan Zhou,, Ning Jiang, Zhenfeng Sheng

TL;DR
This study analyzes UV spectra of three tidal disruption events, revealing high nitrogen-to-carbon abundance ratios in their broad line regions, supporting stellar tidal disruption origins and providing insights into the chemical composition of disrupted stars.
Contribution
It provides the first robust estimates of nitrogen-to-carbon abundance ratios in TDEs, demonstrating that their broad line regions are nitrogen-enhanced and consistent with stellar disruption models.
Findings
High [N/C] abundance ratios (>1.5) in TDE broad line regions.
Line ratio stability across various physical conditions allows reliable abundance estimates.
Chemical signatures support stellar tidal disruption as the flare origin.
Abstract
The rest-frame UV spectra of three recent tidal disruption events (TDEs), ASASSN-14li, PTF15af and iPTF16fnl display strong nitrogen emission lines but weak or undetectable carbon lines. In these three objects, the upper limits of the C III] /N III] ratio are about two orders of magnitude lower than those of quasars, suggesting a high abundance ratio of [N/C]. With detailed photoionization simulations, we demonstrate that and are formed in the same zone, so the C III]/N III] ratio depends only moderately on the physical conditions in the gas and weakly on the shape of the ionizing continuum. There are smaller than dex variations in the line ratio over wide ranges of gas densities and ionization parameters at a given metallicity. This allows a robust estimate of the relative abundance ratio nitrogen to carbon. We derive a relative…
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