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Discovery of Quasi-periodic Eruptions in the Tidal Disruption Event and Extreme Coronal Line Emitter AT2022upj: implications for the QPE/TDE fraction and a connection to ECLEs

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arxiv 2503.19013 v2 pith:ROORWGSN submitted 2025-03-24 astro-ph.HE astro-ph.GA

classification astro-ph.HEastro-ph.GA
keywords qpesat2022upjcoronallineemissionpeaktdesx-ray
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Quasi-periodic eruptions (QPEs) are recurring soft X-ray transients emerging from the vicinity of supermassive black holes (SMBHs) in nearby, low-mass galaxy nuclei; about ten QPE hosts have been identified thus far. Here we report the \textit{NICER} discovery of QPEs in the optically-selected Tidal Disruption Event (TDE) and Extreme Coronal Line Emitter (ECLE) AT2022upj, exhibiting a large spread in recurrence times from 0.5-3.5 days, durations from 0.3-1 days, peak luminosities from $10^{42.5-43.0}$ erg s$^{-1}$, and erratic flare profiles. A wealth of evidence now links at least some QPEs to the newly-formed accretion flows emerging from TDEs; AT2022upj is the third QPE reported in an optically discovered TDE. Marginalizing over the uncertain distributions of QPE peak luminosity, recurrence time, delay after TDE peak, and lifetime, we use the burgeoning sample to make a Bayesian estimate that the fraction of optical TDEs resulting in QPEs within 5 years post-disruption is $9^{+9}_{-5}$\%. Along with AT2019qiz, AT2022upj also marks the second of the three optical TDE+X-ray QPEs showing coronal line emission, suggesting ECLEs may represent a subset of TDEs particularly efficient at forming QPEs and/or that sustained QPE X-ray emission contributes to coronal line emission in some galaxy nuclei.

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  1. Can Quasi-periodic Eruptions Produce Detectable High Energy Neutrinos?

    astro-ph.HE 2025-09 conditional novelty 6.0 of 10

    Quasi-periodic eruptions could accelerate protons to tens of TeV, but their 10-year neutrino fluences and IceCube event rates are too low for individual detection except for very nearby sources.

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