ESPRESSO reveals a single but perturbed broad-line region in the supermassive black hole binary candidate PG 1302-102
arXiv:2504.06331 · doi:10.1051/0004-6361/202452830
Abstract
We present a new, Bayesian analysis of the highest-resolution optical spectrum of the supermassive black hole (SMBH) binary candidate PG 1302-102, obtained with ESPRESSO@VLT (R \simeq 138, 000). Our methodology, based on robust Bayesian model selection, reveals the presence of multiple narrow emission lines at the expected redshift of the source and confirms (for H\{beta}) and detects (for Hγ) the presence of redshifted broad components. Additionally, we have discovered a very broad and, if it is associated with the H\{beta}, very redshifted component at λ \simeq 5000Å. We evaluate two scenarios for explaining the observed broad emission line (BEL) in PG 1302-102. In the case in which the redshifted BEL asymmetry arises from the orbital motion of a putative binary, our measurements coupled with simple estimates of the broad-line region (BLR) sizes suggest that the individual black hole BLRs are either settled in a single BLR or in the process of merging and, therefore truncated and highly disturbed. Alternatively, in the scenario of a single SMBH, we explain the distorted emission of the BELs with a nonsymmetric distribution of the BLR clouds; namely, a thin disk with a spiral perturbation. This BLR configuration is statistically preferred over any empirical multi-Gaussian fit and simultaneously explains the asymmetric emission of the Hβ and Hγ close to the bulk of the line and any additional excess (or the lack of it, in the case of the Hγ) at much longer wavelengths. The physical origins of the perturbation are unclear, and a connection with the possible presence of a black hole binary cannot be ruled out. Given the growing evidence from theoretical and observational works demonstrating the common presence of disturbed BLRs in active galactic nuclei, we argue that an origin related to self-gravitating instabilities may be more plausible.
13 pages, 6 figures, accepted on A&A
References in corpus (19)
- A massive binary black-hole system in OJ287 and a test of general relativity
- A possible close supermassive black-hole binary in a quasar with optical periodicity
- Fe II Emission in 14 Low-Redshift Quasars: I - Observations
- Double-peaked profiles: ubiquitous signatures of disks in the Broad Emission Lines of Active Galactic Nuclei
- VLT/ISAAC Spectra of the Hbeta Region in Intermediate-Redshift Quasars III. Hbeta Broad Line Profile Analysis and Inferences about BLR Structure
- Periodic self-lensing from accreting massive black hole binaries
- A candidate sub-parsec binary black hole in the Seyfert galaxy NGC 7674
- A supermassive binary black hole with triple disks
- The Keck Baryonic Structure Survey: Using foreground/background galaxy pairs to trace the structure and kinematics of circumgalactic neutral hydrogen at
- Off-nuclear AGN as a signature of recoiling massive black holes
- Searching for Binary Supermassive Black Holes via Variable Broad Emission Line Shifts: Low Binary Fraction
- Looking at Blazar Light Curve Periodicities with Gaussian Processes
- Self-lensing flares from black hole binaries I: general-relativistic ray tracing of black hole binaries
- Self-lensing flares from black hole binaries II: observing black hole shadows via light-curve tomography
- Variation of Broad Emission Lines from QSOs with Optical/UV Periodicity to Test the Interpretation of Supermassive Binary Black Holes
- Broad-line region configuration of the supermassive binary black hole candidate PG1302-102 in the relativistic Doppler boosting scenario
- Spiral Arms in Broad-line Regions of Active Galactic Nuclei. I. Reverberation and Differential Interferometric Signals of Tightly Wound Cases
- A fast test for the identification and confirmation of massive black hole binaries
- Decomposing galaxies with BANG: an automated morpho-kinematical decomposition of the SDSS-DR17 MaNGA survey
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