The Eddington ratio-dependent ‘changing look’ events in NGC 2992

Author:

Guolo Muryel12ORCID,Ruschel-Dutra Daniel1,Grupe Dirk3ORCID,Peterson Bradley M45,Storchi-Bergmann Thaisa6,Schimoia Jaderson7,Nemmen Rodrigo8,Robinson Andrew9

Affiliation:

1. Departamento de Física - CFM - Universidade Federal de Santa Catarina, 476, Florianópolis SC 88040-900, Brazil

2. Department of Physics and Astronomy, Johns Hopkins University, 3400 N. Charles St., Baltimore MD 21218, USA

3. Space Science Center, Morehead State University, 235 Martindale Drive, Morehead KY 40351, USA

4. Department of Astronomy, The Ohio State University, 140 W 18th Ave, Columbus OH 43210, USA

5. Center for Cosmology and AstroParticle Physics, 191 Woodruff Ave., Columbus OH 43210, USA

6. Departamento de Astronomia, Universidade Federal do Rio Grande do Sul. Av. Bento Goncalves 9500, Porto Alegre RS 91501-970, Brazil

7. Departamento de Física - CCNE - Universidade Federal de Santa Maria, 97105-90 Santa Maria, RS, Brazil

8. Instituto de Astronomia, Geofísica e Ciências Atmosféricas, Universidade de São Paulo, São Paulo SP 05508-090, Brazil

9. School of Physics and Astronomy, Rochester Institute of Technology, 84 Lomb Memorial Drive, Rochester NY 14623, USA

Abstract

ABSTRACT We present an analysis of historical multiwavelength emission of the `Changing Look' (CL) Active Galactic Nucleu (AGN) in NGC 2992, covering epochs ranging from 1978 to 2021, as well as new X-ray and optical spectra. The galaxy presents multiple Seyfert type transitions from Type 2 to intermediate-type, losing and regaining its Hα broad emission lines (BEL) recurrently. In X-rays, the source shows intrinsic variability with the absorption corrected luminosity varying by a factor of ∼ 40. We rule-out tidal disruption events or variable obscuration as causes of the type transitions, and show that the presence and the flux of th Hα BEL is directly correlated with the 2–10 keV X-ray luminosity (L2−10): the component disappears at L2−10 ≤ 2.6 × 1042 $\rm erg\, cm^{-2}\, s^{-1}$; this luminosity value translates into an Eddington ratio (λEdd) of ∼ 1 per cent. The λEdd in which the BEL transitions occur is the same as the critical value at which a state transition between a radiatively inefficient accretion flow and a thin accretion disk is expected, such similarity suggests that the AGN is operating at the threshold mass accretion rate between the two accretion modes. We find a correlation between the narrow Fe Kα flux and λEdd, and an anticorrelation between full-width at half maximum of Hα BEL and λEdd, in agreement with theoretical predictions. Two possible scenarios for type transitions are compatible with our results: either the dimming of the AGN continuum, which reduces the supply of ionizing photons available to excite the gas in the Broad Line Region (BLR), or the fading of the BLR structure itself occurs as the low accretion rate is not able to sustain the required cloud flow rate in a disc-wind BLR model.

Funder

Michigan State University

National Science Foundation

National Research Council

Ministerio de Ciencia, Tecnología e Innovación Productiva

Ministério da Ciência, Tecnologia, Inovações e Comunicações

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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