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      Evidence for the Preferential Disruption of Moderately Massive Stars by Supermassive Black Holes

      , , , , , ,
      The Astrophysical Journal
      American Astronomical Society

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          Abstract

          Tidal disruption events (TDEs) provide a unique opportunity to probe the stellar populations around supermassive black holes (SMBHs). By combining light-curve modeling with spectral line information and knowledge about the stellar populations in the host galaxies, we are able to constrain the properties of the disrupted star for three TDEs. The TDEs in our sample have UV spectra, and measurements of the UV N iii to C iii line ratios enabled estimates of the nitrogen-to-carbon abundance ratios for these events. We show that the measured nitrogen line widths are consistent with originating from the disrupted stellar material dispersed by the central SMBH. We find that these nitrogen-to-carbon abundance ratios necessitate the disruption of moderately massive stars (≳1–2 M ). We determine that these moderately massive disruptions are overrepresented by a factor of ≳10 2 when compared to the overall stellar population of the post-starburst galaxy hosts. This implies that SMBHs are preferentially disrupting higher mass stars, possibly due to ongoing top-heavy star formation in nuclear star clusters or to dynamical mechanisms that preferentially transport higher mass stars to their tidal radii.

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                Author and article information

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                Journal
                The Astrophysical Journal
                ApJ
                American Astronomical Society
                0004-637X
                1538-4357
                January 13 2022
                January 01 2022
                January 13 2022
                January 01 2022
                : 924
                : 2
                : 70
                Article
                10.3847/1538-4357/ac35d5
                9339d597-544d-4917-a463-00b102db253c
                © 2022

                http://creativecommons.org/licenses/by/4.0/

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