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Long-term radio and X-ray evolution of the tidal disruption event ASASSN-14li

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arxiv 1801.03094 v1 pith:SEGX6GVA submitted 2018-01-09 astro-ph.HE

Long-term radio and X-ray evolution of the tidal disruption event ASASSN-14li

classification astro-ph.HE
keywords radioemissionx-raydaysdecaydisruptionphasetidal
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report on late time radio and X-ray observations of the tidal disruption event candidate ASASSN-14li, covering the first 1000 days of the decay phase. For the first $\sim200$ days the radio and X-ray emission fade in concert. This phase is better fit by an exponential decay at X-ray wavelengths, while the radio emission is well described by either an exponential or the canonical $t^{-5/3}$ decay assumed for tidal disruption events. The correlation between radio and X-ray emission during this period can be fit as $L_{R}\propto L_{X}^{1.9\pm0.2}$. After 400 days the radio emission at $15.5\,\textrm{GHz}$ has reached a plateau level of $244\pm8\,\mu\textrm{Jy}$ which it maintains for at least the next 600 days, while the X-ray emission continues to fade exponentially. This steady level of radio emission is likely due to relic radio lobes from the weak AGN-like activity implied by historical radio observations. We note that while most existing models are based upon the evolution of ejecta which are decoupled from the central black hole, the radio : X-ray correlation during the declining phase is also consistent with core jet emission coupled to a radiatively efficient accretion flow.

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Cited by 2 Pith papers

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  1. The Radio Properties of Extreme Coronal Line Emitters: Constraints on the Sub-parsec Environment

    astro-ph.HE 2026-07 conditional novelty 6.0

    About half of low-redshift ECLEs are radio-bright like TDEs/AGN; SED modeling of four shows the ECL gas is clumpy (f_V ~ 10^{-5}-10^{-2}) and spatially distinct from the radio-emitting region.

  2. Tidal Disruption Events with the SKA

    astro-ph.HE 2026-07 unverdicted novelty 4.0

    With its projected sensitivity, low-frequency coverage, and VLBI, the SKA would shift tidal disruption event radio studies from a handful of events to hundreds, enabling population-level inference on jets, black-hole ...