Characterizing the γ-ray long-term variability of PKS 2155-304 with H.E.S.S. and Fermi-LAT
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Authors
Abdalla, H.
Barnard, M.
Böttcher, M.
Davids, I.D.
Garrigoux, T.
Ivascenko, A.
Krüger, P.P.
Pekeur, N.W.
Seyffert, A.S.
Spanier, F.
Researcher ID
24420530 - Böttcher, Markus
13146629 - Davids, Isak Delberth
24790052 - Ivascenko, Alex
11749903 - Krüger, Petrus Paulus
22050574 - Pekeur, Nicolette Whilna
25161814 - Spanier, Felix Alexander
24922986 - Sushch, Iurii
12006653 - Venter, Christo
10060499 - Van der Walt, Diederick Johannes
20126999 - Seyffert, Albertus Stefanus
26909995 - Garrigoux, Tania
26594080 - Wadiasingh, Zorawar
21106266 - Van Rensburg, Carlo
20574266 - Barnard, Monica
26598973 - Abdalla, Hassan
13146629 - Davids, Isak Delberth
24790052 - Ivascenko, Alex
11749903 - Krüger, Petrus Paulus
22050574 - Pekeur, Nicolette Whilna
25161814 - Spanier, Felix Alexander
24922986 - Sushch, Iurii
12006653 - Venter, Christo
10060499 - Van der Walt, Diederick Johannes
20126999 - Seyffert, Albertus Stefanus
26909995 - Garrigoux, Tania
26594080 - Wadiasingh, Zorawar
21106266 - Van Rensburg, Carlo
20574266 - Barnard, Monica
26598973 - Abdalla, Hassan
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EDP Sciences
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Abstract
Studying the temporal variability of BL Lac objects at the highest energies provides unique insights into the extreme physical processes occurring in relativistic jets and in the vicinity of super-massive black holes. To this end, the long-term variability of the BL Lac object PKS?2155?304 is analyzed in the high (HE, 100 MeV < E < 300 GeV) and very high energy (VHE, E > 200 GeV) ?-ray domain. Over the course of ~9?yr of H.E.S.S. observations the VHE light curve in the quiescent state is consistent with a log-normal behavior. The VHE variability in this state is well described by flicker noise (power-spectral-density index ?VHE = 1.10+0.10-0.13) on timescales larger than one day. An analysis of ~5.5 yr of HE Fermi-LAT data gives consistent results (?HE = 1.20+0.21-0.23, on timescales larger than 10 days) compatible with the VHE findings. The HE and VHE power spectral densities show a scale invariance across the probed time ranges. A direct linear correlation between the VHE and HE fluxes could neither be excluded nor firmly established. These long-term-variability properties are discussed and compared to the red noise behavior (? ~ 2) seen on shorter timescales during VHE-flaring states. The difference in power spectral noise behavior at VHE energies during quiescent and flaring states provides evidence that these states are influenced by different physical processes, while the compatibility of the HE and VHE long-term results is suggestive of a common physical link as it might be introduced by an underlying jet-disk connection
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Abdalla, H. et al. 2017. Characterizing the γ-ray long-term variability of PKS 2155-304 with H.E.S.S. and Fermi-LAT. Astronomy & astrophysics, 598: Article no A39. [https://doi.org/10.1051/0004-6361/201629419]
