Genuine Retrieval of the AGN Host Stellar Population (GRAHSP)
Johannes Buchner, Hattie Starck, Mara Salvato, Hagai Netzer, Zsofi Igo, Brivael Laloux, Antonis Georgakakis, Isabelle Gauger, Anna Olechowska, Nicolas Lopez, Suraj D Shankar, Junyao Li, Kirpal Nandra, Andrea Merloni

TL;DR
GRAHSP is a new Bayesian SED fitting code that accurately estimates host galaxy properties in AGN, overcoming previous biases caused by AGN contamination, and is validated on a hybrid dataset with known parameters.
Contribution
The paper introduces GRAHSP, a flexible SED fitting tool with an empirically motivated AGN model, and provides a benchmark dataset to evaluate its performance against existing methods.
Findings
GRAHSP accurately recovers galaxy parameters with no bias.
Previous codes overestimate stellar mass and SFR by 0.5 dex at high AGN luminosities.
GRAHSP estimates realistic uncertainties in galaxy property measurements.
Abstract
The assembly and co-evolution of supermassive black holes (SMBH) and their host galaxy stellar population is a key open questions in galaxy evolution. Stellar mass () and star formation rate (SFR), are inferred by modeling the spectral energy distribution (SED). For galaxies triggering SMBH activity, the active galactic nucleus (AGN) contaminates the light at all wavelengths, hampering the inference of galaxy parameters. Incomplete AGN templates can lead to systematic overestimates of the stellar mass, biasing our understanding of AGN-galaxy co-evolution. This challenge has gained further impetus with the advent of sensitive wide-area surveys with millions of luminous AGN, including by eROSITA, Euclid and LSST. We aim to estimate the accuracy and bias of AGN host galaxy parameters and improve upon existing techniques. This work makes two contributions: 1) a new SED fitting…
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Taxonomy
TopicsAstronomical Observations and Instrumentation
