# Simultaneous Swift and REM monitoring of the blazar PKS0537-441 in 2005

**Authors:** E. Pian (1), P. Romano (2,3), A. Treves (4), G. Ghisellini (2), S., Covino (2), A. Cucchiara (5), A. Dolcini (4), G. Tagliaferri (2), C., Markwardt (6), S. Campana (2), G. Chincarini (2,3), N. Gehrels (6), P. Giommi, (7), L. Maraschi (8), S.D. Vergani (9,10), F.M. Zerbi (2), E. Molinari (2),, V. Testa (11), G. Tosti (12), F. Vitali (11), L.A. Antonelli (11), P. Conconi, (2), G. Malaspina (2), L. Nicastro (13), E. Palazzi (13), E.J.A. Meurs (9),, L. Norci (10) ((1) INAF-Trieste, (2) INAF-Brera/Merate, (3) Univ., Milano-Bicocca, (4) Univ. Insubria, (5) Penn State, (6) GSFC-NASA, (7) ASI, ASDC, (8) INAF-Brera/Milano, (9) Dunsink Obs., (10) School of Physical, Sciences, NCPST, Dublin, (11) INAF-Rome, (12) Univ. Perugia, (13), INAF-IASF/Bologna)

arXiv: 0704.0958 · 2009-06-23

## TL;DR

This study presents comprehensive simultaneous optical, infrared, X-ray, and UV observations of the blazar PKS0537-441 over a year, revealing correlated long-term variability and unusual amplitude differences, providing insights into jet emission mechanisms.

## Contribution

It offers the first extensive multi-wavelength monitoring of PKS0537-441, highlighting the correlation of optical and X-ray variability and the unique amplitude differences in long-term blazar activity.

## Key findings

- Optical and X-ray emissions are well correlated over long timescales.
- X-ray variations are more pronounced than optical on short timescales.
- The spectral energy distribution supports jet emission models involving internal shocks.

## Abstract

The blazar PKS0537-441 has been observed by Swift between the end of 2004 and November 2005. The BAT monitored it recurrently for a total of 2.7 Ms, and the XRT and UVOT pointed it on seven occasions for a total of 67 ks, making it one of the AGNs best monitored by Swift. The automatic optical and infrared telescope REM has monitored simultaneously the source at all times. In January-February 2005 PKS0537-441 has been detected at its brightest in optical and X-rays: more than a factor of 2 brighter in X-rays and about a factor 60 brighter in the optical than observed in December 2004. The July 2005 observation recorded a fainter X-ray state. The simultaneous optical state, monitored by both Swift UVOT and REM, is high, and in the VRI bands it is comparable to what was recorded in early January 2005, before the outburst. In November 2005, the source subsided both in X-rays and optical to a quiescent state, having decreased by factors of ~4 and ~60 with respect to the January-February 2005 outburst, respectively. Our monitoring shows an overall well correlated optical and X-ray decay. On the shorter time scales (days or hours), there is no obvious correlation between X-ray and optical variations, but the former tend to be more pronounced, opposite to what is observed on monthly time scales. The widely different amplitude of the long term variability in optical and X-rays is very unusual and makes this observation a unique case study for blazar activity. The spectral energy distributions are interpreted in terms of the synchrotron and inverse Compton mechanisms within a jet where the plasma radiates via internal shocks and the dissipation depends on the distance of the emitting region from the central engine (abridged).

## Full text

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## Figures

9 figures with captions in the complete paper: https://tomesphere.com/paper/0704.0958/full.md

## References

51 references — full list in the complete paper: https://tomesphere.com/paper/0704.0958/full.md

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Source: https://tomesphere.com/paper/0704.0958