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Autores principales: Tan, Joanne, Yang, Guang, Walsh, Jonelle L., Brandt, W. N., Luo, Bin, Bauer, Franz E., Chen, Chien-Ting, Sun, Mouyuan, Xue, Yongquan
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2410.02484
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author Tan, Joanne
Yang, Guang
Walsh, Jonelle L.
Brandt, W. N.
Luo, Bin
Bauer, Franz E.
Chen, Chien-Ting
Sun, Mouyuan
Xue, Yongquan
author_facet Tan, Joanne
Yang, Guang
Walsh, Jonelle L.
Brandt, W. N.
Luo, Bin
Bauer, Franz E.
Chen, Chien-Ting
Sun, Mouyuan
Xue, Yongquan
contents Tidal disruption events (TDEs) could be an important growth channel for massive black holes in dwarf galaxies. Theoretical work suggests that the observed active galactic nuclei (AGNs) in dwarf galaxies are predominantly TDE-powered. To assess this claim, we perform variability analyses on the dwarf-hosted AGNs detected in the $7$ Ms Chandra Deep Field-South (CDF-S) survey, with observations spanning $\approx 16$ years. Based on the spectral energy distribution (SED) modeling with X-CIGALE, we select AGNs hosted by dwarf galaxies (stellar mass below $10^{10}\ M_\odot$). We focus on X-ray sources with full-band detections, leading to a sample of $78$ AGNs (0.122 $\leq$ $z$ $\leq$ 3.515). We fit the X-ray light curves with a canonical TDE model of $t^{-5/3}$ and a constant model. If the former outperforms the latter in fitting quality for a source, we consider the source as a potential TDE. We identify five potential TDEs, constituting a small fraction of our sample. Using true- and false-positive rates obtained from fitting models to simulated light curves, we perform Bayesian analysis to obtain the posterior of the TDE fraction for our sample. The posterior peaks close to zero ($2.56\%$), and we obtain a $2$-$σ$ upper limit of $9.80\%$. Therefore, our result indicates that the observed AGNs in dwarf galaxies are not predominantly powered by TDEs.
format Preprint
id arxiv_https___arxiv_org_abs_2410_02484
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Rare Occasions: Tidal Disruption Events Rarely Power the AGNs Observed in Dwarf Galaxies
Tan, Joanne
Yang, Guang
Walsh, Jonelle L.
Brandt, W. N.
Luo, Bin
Bauer, Franz E.
Chen, Chien-Ting
Sun, Mouyuan
Xue, Yongquan
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
Tidal disruption events (TDEs) could be an important growth channel for massive black holes in dwarf galaxies. Theoretical work suggests that the observed active galactic nuclei (AGNs) in dwarf galaxies are predominantly TDE-powered. To assess this claim, we perform variability analyses on the dwarf-hosted AGNs detected in the $7$ Ms Chandra Deep Field-South (CDF-S) survey, with observations spanning $\approx 16$ years. Based on the spectral energy distribution (SED) modeling with X-CIGALE, we select AGNs hosted by dwarf galaxies (stellar mass below $10^{10}\ M_\odot$). We focus on X-ray sources with full-band detections, leading to a sample of $78$ AGNs (0.122 $\leq$ $z$ $\leq$ 3.515). We fit the X-ray light curves with a canonical TDE model of $t^{-5/3}$ and a constant model. If the former outperforms the latter in fitting quality for a source, we consider the source as a potential TDE. We identify five potential TDEs, constituting a small fraction of our sample. Using true- and false-positive rates obtained from fitting models to simulated light curves, we perform Bayesian analysis to obtain the posterior of the TDE fraction for our sample. The posterior peaks close to zero ($2.56\%$), and we obtain a $2$-$σ$ upper limit of $9.80\%$. Therefore, our result indicates that the observed AGNs in dwarf galaxies are not predominantly powered by TDEs.
title Rare Occasions: Tidal Disruption Events Rarely Power the AGNs Observed in Dwarf Galaxies
topic Astrophysics of Galaxies
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2410.02484