Accretion Disc-Jet Decomposition from the Optical-Near Infrared Monitoring of Fermi Blazars

Fuente: arXiv
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Autores principales: Rajguru, Garima, Chatterjee, Ritaban
Formato: Preprint
Publicado: 2024
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author Rajguru, Garima
Chatterjee, Ritaban
author_facet Rajguru, Garima
Chatterjee, Ritaban
contents We study the variability of the thermal (accretion disc) and non-thermal (jet) emission of thirteen flat spectrum radio quasars in the optical and near infrared (OIR) regime using light curves spanning years with an average sampling of three observations per week. We fit a combination of a blackbody and a power-law function to the OIR data, in the blazar rest frame, to extract the corresponding thermal (disc) and non-thermal (jet) components from the total flux. We carry out this analysis for the entire duration of the light curves to obtain the variation of the disc and jet components over years. Reliability of our fits have been affirmed by successfully retrieving accurate parameters by employing our method to simulated data and by comparing our results with published disc luminosity obtained by other methods for a few well-observed blazars. In blazars, the thermal (disc) emission is difficult to extract because the relativistically beamed radiation of the jet dominates at all wavelengths. By employing this method, the disc emission in blazars may be estimated directly from photometric data at OIR bands instead of indirect methods, such as, inferring it from the emission line luminosities. We find that the variability of the disc and jet emission obtained by the above method are strongly correlated in most cases.
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id arxiv_https___arxiv_org_abs_2412_10343
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Accretion Disc-Jet Decomposition from the Optical-Near Infrared Monitoring of Fermi Blazars
Rajguru, Garima
Chatterjee, Ritaban
High Energy Astrophysical Phenomena
We study the variability of the thermal (accretion disc) and non-thermal (jet) emission of thirteen flat spectrum radio quasars in the optical and near infrared (OIR) regime using light curves spanning years with an average sampling of three observations per week. We fit a combination of a blackbody and a power-law function to the OIR data, in the blazar rest frame, to extract the corresponding thermal (disc) and non-thermal (jet) components from the total flux. We carry out this analysis for the entire duration of the light curves to obtain the variation of the disc and jet components over years. Reliability of our fits have been affirmed by successfully retrieving accurate parameters by employing our method to simulated data and by comparing our results with published disc luminosity obtained by other methods for a few well-observed blazars. In blazars, the thermal (disc) emission is difficult to extract because the relativistically beamed radiation of the jet dominates at all wavelengths. By employing this method, the disc emission in blazars may be estimated directly from photometric data at OIR bands instead of indirect methods, such as, inferring it from the emission line luminosities. We find that the variability of the disc and jet emission obtained by the above method are strongly correlated in most cases.
title Accretion Disc-Jet Decomposition from the Optical-Near Infrared Monitoring of Fermi Blazars
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2412.10343