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The awakening of BL Lacertae: observations by Fermi, Swift and the GASP-WEBT

The awakening of BL Lacertae: observations by Fermi, Swift and the GASP-WEBT
The awakening of BL Lacertae: observations by Fermi, Swift and the GASP-WEBT
Since the launch of the Fermi satellite, BL Lacertae has been moderately active at ?-rays and optical frequencies until 2011 May, when the source started a series of strong flares. The exceptional optical sampling achieved by the GLAST–AGILE Support Program of the Whole Earth Blazar Telescope in collaboration with the Steward Observatory allows us to perform a detailed comparison with the daily γ-ray observations by Fermi. Discrete correlation analysis between the optical and γ-ray emission reveals correlation with a time lag of 0 ± 1 d, which suggests cospatiality of the corresponding jet emitting regions. A better definition of the time lag is hindered by the daily gaps in the sampling of the extremely fast flux variations. In general, optical flares present more structure and develop on longer time-scales than corresponding γ-ray flares. Observations at X-rays and at millimetre wavelengths reveal a common trend, which suggests that the region producing the mm and X-ray radiation is located downstream from the optical and γ-ray-emitting zone in the jet. The mean optical degree of polarization slightly decreases over the considered period and in general it is higher when the flux is lower. The optical electric vector polarization angle (EVPA) shows a preferred orientation of about 15°, nearly aligned with the radio core EVPA and mean jet direction. Oscillations around it increase during the 2011–2012 outburst. We investigate the effects of a geometrical interpretation of the long-term flux variability on the polarization. A helical magnetic field model predicts an evolution of the mean polarization that is in reasonable agreement with the observations. These can be fully explained by introducing slight variations in the compression factor in a transverse shock waves model.
1365-2966
1530-1545
Raiteri, C. M.
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Villata, M.
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Villata, M.
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Raiteri, C. M., Villata, M., D'Ammando, F., Larionov, V. M., Gurwell, M. A., Mirzaqulov, D. O., Smith, P. S., Acosta-Pulido, J. A., Agudo, I., Arevalo, M. J., Bachev, R., Benitez, E., Berdyugin, A., Blinov, D. A., Borman, G. A., Bottcher, M., Bozhilov, V., Carnerero, M. I., Carosati, D., Casadio, C., Chen, W. P., Doroshenko, V. T., Efimov, Y. S., Efimova, N. V., Ehgamberdiev, S. A., Gomez, J. L., Gonzalez-Morales, P. A., Hiriart, D., Ibryamov, S., Jadhav, Y., Jorstad, S. G., Joshi, M., Kadenius, V., Klimanov, S. A., Kohli, M., Konstantinova, T. S., Kopatskaya, E. N., Koptelova, E., Kimeridze, G., Kurtanidze, O. M., Larionova, E. G., Larionova, L. V., Ligustri, R., Lindfors, E., Marscher, A. P., McBreen, B., McHardy, I. M., Metodieva, Y., Molina, S. N., Morozova, D. A., Nazarov, S. V., Nikolashvili, M. G., Nilsson, K., Okhmat, D. N., Ovcharov, E., Panwar, N., Pasanen, M., Peneva, S., Phipps, J., Pulatova, N. G., Reinthal, R., Ros, J. A., Sadun, A. C., Schwartz, R. D., Semkov, E., Sergeev, S. G., Sigua, L. A., Sillanpaa, A., Smith, N., Stoyanov, K., Strigachev, A., Takalo, L. O., Taylor, B., Thum, C., Troitsky, I. S., Valcheva, A., Wehrle, A. E. and Wiesemeyer, H. (2013) The awakening of BL Lacertae: observations by Fermi, Swift and the GASP-WEBT. Monthly Notices of the Royal Astronomical Society, 436 (2), 1530-1545. (doi:10.1093/mnras/stt1672).

Record type: Article

Abstract

Since the launch of the Fermi satellite, BL Lacertae has been moderately active at ?-rays and optical frequencies until 2011 May, when the source started a series of strong flares. The exceptional optical sampling achieved by the GLAST–AGILE Support Program of the Whole Earth Blazar Telescope in collaboration with the Steward Observatory allows us to perform a detailed comparison with the daily γ-ray observations by Fermi. Discrete correlation analysis between the optical and γ-ray emission reveals correlation with a time lag of 0 ± 1 d, which suggests cospatiality of the corresponding jet emitting regions. A better definition of the time lag is hindered by the daily gaps in the sampling of the extremely fast flux variations. In general, optical flares present more structure and develop on longer time-scales than corresponding γ-ray flares. Observations at X-rays and at millimetre wavelengths reveal a common trend, which suggests that the region producing the mm and X-ray radiation is located downstream from the optical and γ-ray-emitting zone in the jet. The mean optical degree of polarization slightly decreases over the considered period and in general it is higher when the flux is lower. The optical electric vector polarization angle (EVPA) shows a preferred orientation of about 15°, nearly aligned with the radio core EVPA and mean jet direction. Oscillations around it increase during the 2011–2012 outburst. We investigate the effects of a geometrical interpretation of the long-term flux variability on the polarization. A helical magnetic field model predicts an evolution of the mean polarization that is in reasonable agreement with the observations. These can be fully explained by introducing slight variations in the compression factor in a transverse shock waves model.

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e-pub ahead of print date: 7 October 2013
Published date: December 2013
Organisations: Physics & Astronomy

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Local EPrints ID: 369388
URI: http://eprints.soton.ac.uk/id/eprint/369388
ISSN: 1365-2966
PURE UUID: 1383e5dd-3e0b-429b-8f1f-cbb7642139f4

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Date deposited: 25 Sep 2014 10:41
Last modified: 14 Mar 2024 18:02

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Contributors

Author: C. M. Raiteri
Author: M. Villata
Author: F. D'Ammando
Author: V. M. Larionov
Author: M. A. Gurwell
Author: D. O. Mirzaqulov
Author: P. S. Smith
Author: J. A. Acosta-Pulido
Author: I. Agudo
Author: M. J. Arevalo
Author: R. Bachev
Author: E. Benitez
Author: A. Berdyugin
Author: D. A. Blinov
Author: G. A. Borman
Author: M. Bottcher
Author: V. Bozhilov
Author: M. I. Carnerero
Author: D. Carosati
Author: C. Casadio
Author: W. P. Chen
Author: V. T. Doroshenko
Author: Y. S. Efimov
Author: N. V. Efimova
Author: S. A. Ehgamberdiev
Author: J. L. Gomez
Author: P. A. Gonzalez-Morales
Author: D. Hiriart
Author: S. Ibryamov
Author: Y. Jadhav
Author: S. G. Jorstad
Author: M. Joshi
Author: V. Kadenius
Author: S. A. Klimanov
Author: M. Kohli
Author: T. S. Konstantinova
Author: E. N. Kopatskaya
Author: E. Koptelova
Author: G. Kimeridze
Author: O. M. Kurtanidze
Author: E. G. Larionova
Author: L. V. Larionova
Author: R. Ligustri
Author: E. Lindfors
Author: A. P. Marscher
Author: B. McBreen
Author: I. M. McHardy
Author: Y. Metodieva
Author: S. N. Molina
Author: D. A. Morozova
Author: S. V. Nazarov
Author: M. G. Nikolashvili
Author: K. Nilsson
Author: D. N. Okhmat
Author: E. Ovcharov
Author: N. Panwar
Author: M. Pasanen
Author: S. Peneva
Author: J. Phipps
Author: N. G. Pulatova
Author: R. Reinthal
Author: J. A. Ros
Author: A. C. Sadun
Author: R. D. Schwartz
Author: E. Semkov
Author: S. G. Sergeev
Author: L. A. Sigua
Author: A. Sillanpaa
Author: N. Smith
Author: K. Stoyanov
Author: A. Strigachev
Author: L. O. Takalo
Author: B. Taylor
Author: C. Thum
Author: I. S. Troitsky
Author: A. Valcheva
Author: A. E. Wehrle
Author: H. Wiesemeyer

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