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    Eccentric accretion disks in active galactic nuclei

    Hongping Deng*

    • *Contact author: hpdeng353@shao.ac.cn

    Phys. Rev. D 113, 083021 – Published 15 April, 2026

    DOI: https://doi.org/10.1103/wwg4-ypvb

    Abstract

    We report that moderately eccentric flows around supermassive black holes (SMBHs), formed via either circumnuclear gas accretion or tidal disruption events, generate eccentricity cascades (from >0.8 to 0.2 outward), explaining multiwavelength emission and variability in active galactic nuclei (AGNs). The flows’ nonaxisymmetric temperature structure explains nonaxisymmetric dust sublimation fronts, distinct broad emission-line components, and their radial motions. The innermost broad-line region (BLR) links to the SMBH vicinity through highly eccentric streams that produce soft x-rays at periapsis. General relativistic precession further compresses these flows, generating a hard x-ray continuum near the SMBH. Precession of the eccentric flow drives optical/x-ray variability, reproducing the observed x-ray power spectral density and occasional x-ray quasiperiodic eruptions. We thus propose eccentric accretion disks as a physical AGN model that unifies the elusive BLRs and the x-ray corona. This model will enable detailed anatomy of AGNs and maximize their potential as cosmological standard candles.

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