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HALO

Title: HALO
Authors: Mandal Amit Kumar; Pozo Nuñez Francisco; Jaiswal Vikram Kumar; Naddaf Mohammad Hassan; Czerny Bożena; Panda Swayamtrupta; Karczmarek Paulina; Pietrzyński Grzegorz; Pandey Shivangi; Peterson B. M.; Zajaček Michal; Dovčiak Michal; Karas Vladimir; Narloch Weronika; Kicia Mirosław; Górski Marek; Kałuszyński Mikołaj; Hajdu Gergely; Wielgórski Piotr; Zgirski Bartłomiej; Gałan Cezary; Pych Wojciech; Smolec Radosław; Bąkowska Karolina; Gieren Wolfgang; Kervella Pierre
Source: Astronomy & Astrophysics, Vol 706, p A176 (2026)
Publisher Information: EDP Sciences, 2026.
Publication Year: 2026
Collection: LCC:Astronomy
Subject Terms: galaxies: active; galaxies: distances and redshifts; galaxies: nuclei; galaxies: photometry; quasars: emission lines; galaxies: seyfert; Astronomy; QB1-991
Description: Context. We investigate the origin of inter-band continuum time delays in active galactic nuclei (AGNs) in order to study the structure and properties of their accretion disks. Aims. We aim to measure the inter-band continuum time delays through photometric monitoring of Seyfert galaxy Fairall 9 to construct the lag-spectrum. Additionally, we explain the observed features in the Fairall 9 lag-spectrum and discuss the potential drivers behind them based on our newly collected data from the Obserwatorium Cerro Murphy (OCM) telescope. Methods. We initiated a long-term, continuous AGN photometric monitoring program in 2024 titled Hubble constant constraints through AGN Light curve Observations (HALO) using intermediate and broadband filters. Here, we present the first results from HALO, focusing on photometric light curves and continuum time-delay measurements for Fairall 9. To complement these observations and extend the wavelength coverage of the lag-spectrum, we also reanalyzed archival Swift light curves and spectroscopic data available in the literature. Results. Using HALO and Swift light curves, we measured inter-band continuum delays to construct the lag-spectrum of Fairall 9. Excess lags appear in the u and U bands (Balmer continuum contamination) and in the I band (Paschen jump and dust emission from the torus). Overall, the lag-spectrum deviates significantly from standard disk model predictions. Conclusions. We find that inter-band delays deviate from the power law, τλ ∝ λβ, due to broad-line region scattering, reprocessing, and dust contributions at longer wavelengths. Power-law fits are therefore not well suited to characterizing the nature of the time delays.
Document Type: article
File Description: electronic resource
Language: English
ISSN: 0004-6361; 1432-0746
Relation: https://www.aanda.org/articles/aa/full_html/2026/02/aa57795-25/aa57795-25.html; https://doaj.org/toc/0004-6361; https://doaj.org/toc/1432-0746
DOI: 10.1051/0004-6361/202557795
Access URL: https://doaj.org/article/2a44d246e2f441908c7307f2bbddf764
Accession Number: edsdoj.2a44d246e2f441908c7307f2bbddf764
Database: Directory of Open Access Journals