Most of the variability studies of active galactic nuclei (AGNs) are based on ensemble analyses. Nevertheless, it is interesting to provide estimates of the individual variability properties of each AGN, in order to relate them with intrinsic physical quantities. A useful dataset is provided by the Catalina Surveys Data Release 2 (CSDR2), which encompasses almost a decade of photometric measurements of $sim500$ million objects repeatedly observed hundreds of times. We aim to investigate the individual optical variability properties of 795 AGNs originally included in the Multi-Epoch XMM Serendipitous AGN Sample 2 (MEXSAS2). Our goals consist in: (i) searching for correlations between variability and AGN physical quantities; (ii) ext...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Active galactic nuclei areamongthemostpersistently energetic objects observed in the known universe....
Rapid flux changes in the X-ray emission from active galactic nuclei are commonly observed. The powe...
Most of the variability studies of active galactic nuclei (AGNs) are based on ensemble analyses. Ne...
The X-ray variability of the Active Galactic Nuclei (AGN) has been most often investigated with stud...
Aims: The goal of this work is to better understand the correlations between the rest-frame UV/optic...
Continuum and emission-line variability of active galactic nuclei provides a powerful probe of micro...
Many efforts have been made in understanding the underlying origin of variability in Active Galactic...
Aims. The goal of this work is to better understand the correlations between the rest-fram...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Aims. We investigate the properties of a variability-selected complete sample of active galactic nuc...
Context. The X-ray variability of the active galactic nuclei (AGN) has been most often investigated ...
Variability characterizes AGNs at all wavelengths, with timescales from minutes to years depending o...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Active galactic nuclei areamongthemostpersistently energetic objects observed in the known universe....
Rapid flux changes in the X-ray emission from active galactic nuclei are commonly observed. The powe...
Most of the variability studies of active galactic nuclei (AGNs) are based on ensemble analyses. Ne...
The X-ray variability of the Active Galactic Nuclei (AGN) has been most often investigated with stud...
Aims: The goal of this work is to better understand the correlations between the rest-frame UV/optic...
Continuum and emission-line variability of active galactic nuclei provides a powerful probe of micro...
Many efforts have been made in understanding the underlying origin of variability in Active Galactic...
Aims. The goal of this work is to better understand the correlations between the rest-fram...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Aims. We investigate the properties of a variability-selected complete sample of active galactic nuc...
Context. The X-ray variability of the active galactic nuclei (AGN) has been most often investigated ...
Variability characterizes AGNs at all wavelengths, with timescales from minutes to years depending o...
Context. Most investigations of the X-ray variability of active galactic nuclei (AGN) have been conc...
Active galactic nuclei areamongthemostpersistently energetic objects observed in the known universe....
Rapid flux changes in the X-ray emission from active galactic nuclei are commonly observed. The powe...