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Swift/UVOT discovery of Swift J221951-484240: a UV luminous ambiguous nuclear transient

  • S. R. Oates
  • , N. P. M. Kuin
  • , M. Nicholl
  • , F. Marshall
  • , E. Ridley
  • , K. Boutsia
  • , A. A. Breeveld
  • , D. A. H. Buckley
  • , S. B. Cenko
  • , M. De Pasquale
  • , P. G. Edwards
  • , M. Gromadzki
  • , R. Gupta
  • , S. Laha
  • , N. Morrell
  • , M. Orio
  • , S. B. Pandey
  • , M. J. Page
  • , K. L. Page
  • , T. Parsotan
  • A. Rau, P. Schady, J. Stevens, P. J. Brown, P. A. Evans, C. Gronwall, J. A. Kennea, N. J. Klingler, M. H. Siegel, A. Tohuvavohu, E. Ambrosi, S. D. Barthelmy, A. P. Beardmore, M. G. Bernardini, C. Bonnerot, S. Campana, R. Caputo, S. Ciroi, G. Cusumano, A. D'Ai, P. D'Avanzo, V. D'Elia, P. Giommi, D. H. Hartmann, H. A. Krimm, D. B. Malesani, A. Melandri, J. A. Nousek, P. T. O'Brien, J. P. Osborne, C. Pagani, D. M. Palmer, M. Perri, J. L. Racusin, T. Sakamoto, B. Sbarufatti, J. E. Schlieder, G. Tagliaferri, E. Troja, D. Xu

Research output: Contribution to journalArticlepeer-review

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Abstract

We report the discovery of Swift J221951-484240 (hereafter: J221951), a luminous slow-evolving blue transient that was detected by the Neil Gehrels Swift Observatory Ultra-violet/Optical Telescope (Swift/UVOT) during the follow-up of Gravitational Wave alert S190930t, to which it is unrelated. Swift/UVOT photometry shows the UV spectral energy distribution of the transient to be well modelled by a slowly shrinking black body with an approximately constant temperature of T~2.5x10^4 K. At a redshift z=0.5205, J221951 had a peak absolute magnitude of M_u,AB = -23 mag, peak bolometric luminosity L_max=1.1x10^45 erg s^-1 and a total radiated energy of E>2.6x10^52 erg. The archival WISE IR photometry shows a slow rise prior to a peak near the discovery date. Spectroscopic UV observations display broad absorption lines in N V and O VI, pointing toward an outflow at coronal temperatures. The lack of emission in the higher H~Lyman lines, N I and other neutral lines is consistent with a viewing angle close to the plane of the accretion or debris disc. The origin of J221951 can not be determined with certainty but has properties consistent with a tidal disruption event and the turn-on of an active galactic nucleus.
Original languageEnglish
Pages (from-to)1688-1710
Number of pages23
JournalMonthly Notices of the Royal Astronomical Society
Volume530
Issue number2
DOIs
Publication statusPublished - 19 Mar 2024

Bibliographical note

37 pages (25 main + 12 supplementary), submitted to MNRAS

Keywords

  • black hole physics
  • gravitational waves
  • galaxies
  • nuclei
  • ultraviolet
  • transients
  • tidal disruption events

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