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Connecting the long-term variability behaviour of active galactic nuclei to their central engines;




TekijätKankkunen, S.; Tornikoski, M.; Hovatta, T.

KustantajaEDP Sciences

Julkaisuvuosi2026

Lehti: Astronomy and Astrophysics

Artikkelin numeroA208

Vuosikerta709

ISSN0004-6361

eISSN1432-0746

DOIhttps://doi.org/10.1051/0004-6361/202558066

Julkaisun avoimuus kirjaamishetkelläAvoimesti saatavilla

Julkaisukanavan avoimuus Kokonaan avoin julkaisukanava

Verkko-osoitehttps://www.aanda.org/articles/aa/full_html/2026/05/aa58066-25/aa58066-25.html

Rinnakkaistallenteen osoitehttps://research.utu.fi/converis/portal/detail/Publication/526480598

Rinnakkaistallenteen lisenssiCC BY

Rinnakkaistallennetun julkaisun versioKustantajan versio

Linkki tutkimusdataanhttps://www.metsahovi.fi/opendata/


Tiivistelmä

Aims. Analysing the long-term radio variability of active galactic nuclei (AGNs) is essential to understanding the physics of relativistic jets launched by supermassive black holes. We aim to connect the characteristic timescales obtained from a prior power spectral density (PSD) analysis to the decomposed timescales of the light curves. In addition, we probe for potential associations between the timescales and the physical characteristics of the relativistic jet as well as the central engine.

Methods. We decomposed the long-term radio light curves of 54 sources observed at the Aalto University Metsähovi Radio Observatory into individual flares to understand which timescale of variability is related to the low-frequency bend in the PSD. In addition, we used the obtained rise times of the brightest flares to look for associations between the emission-region size in the jet and different central engine parameters.

Results. We found that the inverse of the PSD bend frequency of radio light curves best corresponds to the mean duration of the brightest flares. For some sources, the mean flare separation had a similar timescale. Using the flare durations and separations as proxies for the PSD timescale, we found a positive correlation with black hole mass divided by the normalised mass accretion rate. This suggests that the variability timescales obtained from the PSDs of radio light curves are associated with the central engine. Furthermore, when comparing the obtained rise times of the brightest flares to the jet and central engine parameters, we found weak tentative correlations, but they may be driven by a common dependency on redshift.



Avainsanat:
galaxies: activemethods: data analysisquasars: general

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Julkaisussa olevat rahoitustiedot
S.K. was supported by Emil Aaltonen Foundation and Jenny and Antti Wihuri Foundation. T.H. acknowledges support from the Research Council of Finland projects 317383, 320085, 345899, and 362571 and from the European Union ERC-2024-COG– PARTICLES– 101169986. Views and opinions expressed are however those of the author(s) only and do not necessarily reflect those of the European Union or the European Research Council Executive Agency. Neither the European Union nor the granting authority can be held responsible for them. This publication makes use of data obtained at the Metsähovi Radio Observatory, operated by the Aalto University (https://www.metsahovi.fi/opendata/). This research has made use of data from the MOJAVE database that is maintained by the MOJAVE team (Lister et al. 2018).


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