AT 2021loi: A Bowen Fluorescence Flare with a Rebrightening Episode Occurring in a Previously Known AGN

The Astrophysical Journal American Astronomical Society 953:1 (2023) 32-32

Authors:

Lydia Makrygianni, Benny Trakhtenbrot, Iair Arcavi, Claudio Ricci, Marco C Lam, Assaf Horesh, Itai Sfaradi, K Azalee Bostroem, Griffin Hosseinzadeh, D Andrew Howell, Craig Pellegrino, Rob Fender, David A Green, David RA Williams, Joe Bright

Abstract:

AT 2021loi is an optical-ultraviolet transient located at the center of its host galaxy. Its spectral features identify it as a member of the ``Bowen Fluorescence Flare'' (BFF) class. The first member of this class was considered to be related to a tidal disruption event, but enhanced accretion onto an already active supermassive black hole was suggested as an alternative explanation. AT 2021loi, having occurred in a previously-known unobscured AGN, strengthens the latter interpretation. Its light curve is similar to those of previous BFFs, showing a rebrightening approximately one year after the main peak (which was not explicitly identified, but might be the case, in all previous BFFs). An emission feature around 4680 A, seen in the pre-flare spectrum, strengthens by a factor of $\sim$2 around the optical peak of the flare, and is clearly seen as a double peaked feature then, suggesting a blend of NIII $\lambda 4640$ with HeII $\lambda4686$ as its origin. The appearance of OIII $\lambda$3133 and possible NIII $\lambda\lambda4097,4103$ (blended with H$\delta$) during the flare further support a Bowen Fluorescence classification. Here, we present ZTF, ATLAS, Keck, Las Cumbres Observatory, NEOWISE-R, $Swift$, AMI and VLA observations of AT 2021loi, making it one of the best observed BFFs to date. AT 2021loi thus provides some clarity on the nature of BFFs but also further demonstrates the diversity of nuclear transients.Comment: Submitted to ApJ. This version addresses comments from the refere

The Vanishing of the Primary Emission Region in PKS 1510–089

The Astrophysical Journal Letters American Astronomical Society 952:2 (2023) L38-L38

Authors:

F Aharonian, F Ait Benkhali, J Aschersleben, H Ashkar, M Backes, V Barbosa Martins, J Barnard, R Batzofin, Y Becherini, D Berge, K Bernlöhr, B Bi, M de Bony de Lavergne, M Böttcher, C Boisson, J Bolmont, J Borowska, M Bouyahiaoui, F Bradascio, M Breuhaus, R Brose, AM Brown, F Brun, B Bruno, T Bulik, G Cotter

Abstract:

In 2021 July, PKS 1510-089 exhibited a significant flux drop in the high-energy γ-ray (by a factor 10) and optical (by a factor 5) bands and remained in this low state throughout 2022. Similarly, the optical polarization in the source vanished, resulting in the optical spectrum being fully explained through the steady flux of the accretion disk and the broad-line region. Unlike the aforementioned bands, the very-high-energy γ-ray and X-ray fluxes did not exhibit a significant flux drop from year to year. This suggests that the steady-state very-high-energy γ-ray and X-ray fluxes originate from a different emission region than the vanished parts of the high-energy γ-ray and optical jet fluxes. The latter component has disappeared through either a swing of the jet away from the line of sight or a significant drop in the photon production efficiency of the jet close to the black hole. Either change could become visible in high-resolution radio images

The accretion/ejection link in the neutron star X-ray binary 4U 1820-30 I: A boundary layer-jet coupling?

(2023)

Authors:

A Marino, TD Russell, M Del Santo, A Beri, A Sanna, F Coti Zelati, N Degenaar, D Altamirano, E Ambrosi, A Anitra, F Carotenuto, A D'Ai, T Di Salvo, A Manca, SE Motta, C Pinto, F Pintore, N Rea, J Van den Eijnden

No redshift evolution in the rest-frame ultraviolet emission line properties of quasars from z = 1.5 to z = 4.0

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 524:4 (2023) 5497-5513

Authors:

Matthew Stepney, Manda Banerji, Paul C Hewett, Matthew J Temple, Amy L Rankine, James H Matthews, Gordon T Richards

RX J0440.9+4431: another supercritical X-ray pulsar

Monthly Notices of the Royal Astronomical Society Oxford University Press (OUP) 524:4 (2023) 5213-5224

Authors:

Alexander Salganik, Sergey S Tsygankov, Victor Doroshenko, Sergey V Molkov, Alexander A Lutovinov, Alexander A Mushtukov, Juri Poutanen