Multi-band light curves from eccentric accreting supermassive black hole binaries
John Ryan Westernacher-Schneider, Jonathan Zrake, Andrew MacFadyen,, Zolt\'an Haiman

TL;DR
This study uses high-resolution simulations to analyze multi-wavelength light curves from accreting supermassive black hole binaries, revealing in-phase brightness modulations and potential eccentricity signatures, with implications for observational detection.
Contribution
It provides the first detailed modeling of multi-band light curves from eccentric SMBH binaries, highlighting the impact of eccentricity on observable periodic signals.
Findings
Light curves are generally in-phase across wavelengths.
Eccentricity weakens or removes 'lump' periodicity.
Hydrodynamic variability likely dominates Doppler effects.
Abstract
We use long-run, high-resolution hydrodynamics simulations to compute the multi-wavelength light curves (LCs) from thermal disk emission around accreting equal-mass supermassive black hole (BH) binaries, with a focus on revealing binary eccentricity. LCs are obtained by modeling the disk thermodynamics with an adiabatic equation of state, a local blackbody cooling prescription, and corrections to approximate the effects of radiation pressure. We find that modulation of multi-band LCs on the orbital time scale are generally in-phase (to within 2% of a binary orbital period), but they contain pulse substructure in the time domain that is not necessarily reflected in BH accretion rates . We thus predict that binary-hosting AGN will exhibit highly correlated, in-phase, periodic brightness modulations in their low-energy disk emission. However, detectability of these…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Astrophysics and Cosmic Phenomena · Pulsars and Gravitational Waves Research
