Temporal and spectral study of PKS 0208-512 during the 2019-2020 flare

被引:6
|
作者
Khatoon, Rukaiya [1 ,2 ]
Prince, Raj [3 ]
Shah, Zahir [2 ,4 ]
Sahayanathan, Sunder [5 ,6 ]
Gogoi, Rupjyoti [1 ]
机构
[1] Tezpur Univ, Napaam 784028, Assam, India
[2] Interuniv Ctr Astron & Astrophys, Post Bag 4, Pune 411007, Maharashtra, India
[3] Polish Acad Sci, Ctr Theoret Phys, Al Lotnikov 32-46, PL-02668 Warsaw, Poland
[4] Cent Univ Kashmir, Dept Phys, Ganderbal, Jammu & Kashmir, India
[5] Bhabha Atom Res Ctr, Astrophys Sci Div, Mumbai 400085, Maharashtra, India
[6] Homi Bhabha Natl Inst, Mumbai 400094, Maharashtra, India
关键词
radiation mechanisms: non-thermal; galaxies: active; galaxies: jets; quasars: individual: PKS0208-512; gamma-rays: galaxies; LARGE-AREA TELESCOPE; GAMMA-RAY EMISSION; ACTIVE GALACTIC NUCLEI; RELATIVISTIC JETS; RAPID VARIABILITY; LIGHT CURVES; BROAD-BAND; LONG-TERM; 3C; 279; BLAZARS;
D O I
10.1093/mnras/stac892
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We present a temporal and spectral study of the blazar PKS 0208-512, using recent flaring activity from 2019 November to 2020 May, as detected by the Fermi Large Area Telescope. The contemporaneous X-ray and optical/ultraviolet observations from theSwift X-Ray Telescope and UltraViolet and Optical Telescope are also used. During the activity state, the 2-d binned gamma-ray light curve shows multiple peaks indicating subflares. To understand the possible physical mechanisms behind flux enhancement, we divided the activity state of the source into several flux states and carried out detailed temporal and spectral studies. The timing analysis of light curves suggests that peaks of subflares have rise and decay times of the order of days, with the flux doubling time similar to 2 d. The 2-d binned gamma-ray light curve shows double-lognormal flux distribution. The broad-band spectral energy distribution (SED) for three selected flux states can be well fitted under synchrotron, synchrotron self-Compton and external Compton emission mechanisms. We obtained the physical parameters of the jet by SED modelling and their confidence intervals through chi(2)-statistics. Our SED modelling results suggest that during the quiescent state, the gamma-ray spectrum can be explained by considering the external Compton scattering of infrared photons from the dusty torus. However, gamma-ray spectra corresponding to flares demand additional target photons from the broad-line region (BLR) along with infrared. These suggest that, during flares, the emission region is close to the edge of the BLR, while for the quiescent state, the emission region is away from the BLR. The best-fitting results suggest that a marginal increase in the magnetic field during the flaring episode can result in flux enhancement. This is possibly associated with the efficiency of particle acceleration during flaring states compared with the quiescent state.
引用
收藏
页码:611 / 623
页数:13
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