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IPTF16fnl: A Faint and Fast Tidal Disruption Event in an E+A Galaxy
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IPTF16fnl: A Faint and Fast Tidal Disruption Event in an E+A Galaxy

N. Blagorodnova, S. Gezari, T. Hung, S.R. Kulkarni, S.B. Cenko, D.R. Pasham, L. Yan, I. Arcavi, S. Ben-Ami, B.D. Bue, …
Astrophysical Journal, 卷.844(1), 46
07/2017

摘要

accretion, accretion disks black hole physics galaxies: nuclei stars: individual (iPTF16fnl) Astronomy and Astrophysics Space and Planetary Science
We present ground-based and Swift observations of iPTF16fnl, a likely tidal disruption event (TDE) discovered by the intermediate Palomar Transient Factory (iPTF) survey at 66.6 Mpc. The light curve of the object peaked at an absolute mag M <sub>g</sub> = -17.2. The maximum bolometric luminosity (from optical and UV) was L <sub>p</sub> ≃ (1.0 ± 0.15) × 10 <sup>43</sup> erg s <sup>-1</sup> , an order of magnitude fainter than any other optical TDE discovered so far. The luminosity in the first 60 days is consistent with an exponential decay, with L ∝ e <sup>-(t-t0)/τ</sup> , where t <sub>0</sub> = 57631.0 (MJD) and τ ≃ 15 days. The X-ray shows a marginal detection at L <sub>X</sub> = 2.4 <sup>1.9</sup> <sub>-1.1</sub> × 10 <sup>39</sup> erg s <sup>-1</sup> (Swift X-ray Telescope). No radio counterpart was detected down to 3σ, providing upper limits for monochromatic radio luminosities of <sub>ν</sub> L <sub>ν</sub> < 1.7 × 10 <sup>36</sup> erg s <sup>-1</sup> and <sub>ν</sub> L <sub>ν</sub> < 2.3 × 10 <sup>37</sup> erg s <sup>-1</sup> (Very Large Array, 6.1 and 22 GHz). The blackbody temperature, obtained from combined Swift UV and optical photometry, shows a constant value of 19,000 K. The transient spectrum at peak is characterized by broad He ii and Hα emission lines, with FWHMs of about 14,000 km s <sup>-1</sup> and 10,000 km s <sup>-1</sup> , respectively. He i lines are also detected at λλ 5875 and 6678. The spectrum of the host is dominated by strong Balmer absorption lines, which are consistent with a post-starburst (E+A) galaxy with an age of ∼650 Myr and solar metallicity. The characteristics of iPTF16fnl make it an outlier on both luminosity and decay timescales, as compared to other optically selected TDEs. The discovery of such a faint optical event suggests a higher rate of tidal disruptions, as low-luminosity events may have gone unnoticed in previous searches.

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