The multiwavelength variability of 3C 273
S. Soldi (1,2), M. T\"urler (1,2), S. Paltani (1,2), H. D. Aller (3),, M. F. Aller (3), G. Burki (2), M. Chernyakova (4), A. L\"ahteenm\"aki (5), I., M. McHardy (6), E. I. Robson (7), R. Staubert (8), M. Tornikoski (5), R., Walter (1,2), T. J.-L. Courvoisier (1,2) ((1) ISDC

TL;DR
This study compiles a decade of multiwavelength data on quasar 3C 273, analyzing its variability across the spectrum to understand emission mechanisms and their correlations, revealing complex behaviors and multiple emission components.
Contribution
It provides a comprehensive multiwavelength variability analysis of 3C 273, highlighting the presence of multiple emission components and their distinct variability properties.
Findings
Variability amplitude and timescales depend on energy band.
X-ray variability suggests multiple emission components.
Optical and near-infrared emissions are linked to synchrotron radiation.
Abstract
We present an update of 3C 273's database hosted by the ISDC, completed with data from radio to gamma-ray observations over the last 10 years. We use this large data set to study the multiwavelength properties of this quasar,especially focussing on its variability behaviour. We study the amplitude of the variations and the maximum variability time scales across the broad-band spectrum and correlate the light curves in different bands, specifically with the X-rays, to search for possible connections between the emission at different energies. 3C 273 shows variability at all frequencies, with amplitudes and time scales strongly depending on the energy and being the signatures of the different emission mechanisms. The variability properties of the X-ray band imply the presence of either two separate components (possibly a Seyfert-like and a blazar-like) or at least two parameters with…
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