论文标题

Blazar S5 0716+714的多频道光学变异性能的几何解释

A geometrical interpretation for the properties of multiband optical variability of the blazar S5 0716+714

论文作者

Butuzova, Marina S.

论文摘要

我们介绍了Blazar S5 0716+714的多播观测结果的结果,从2014年4月至2015年4月4日,在23晚中执行的夜间变异性。在夜间和周际数据中都检测到蓝光趋势。我们假设越过介质变得透明到光辐射的区域的射流成分几乎形成S5 0716+714的所有光学发射。组件的某些部分与组件的一般轨迹的偏差可能导致这些部分的多普勒因子增加。组件的这些部分获得的各种最大多普勒因子以及凹形同步体的自我吸收光谱所占据的不同体积导致观察到的各种颜色指数行为在可变性中观察到了各种颜色指数的行为,并解释了对物体对物体蓝色的blue-when-wher-wher-when bluer-when bluer-when bluer-wher-wher-wher-wher-wher-wher-wher-wher-wher-wher-when bruighter行为对物体的幅度。我们估计光谱最大频率$ν_\ text {m} \左右(0.6-1.7 \右)\ cdot10^{14} $ hz从Intra和Inter-Anter Inter-Anter-Anter-nift-nift-nift-nifter数据中。假设发射区域的大小与黑洞的重力半径相当,质量为$ 5 \ cdot10^8 $太阳质量,则从Synchrotron自我吸收的磁场为$ b \ sim10^2-10^4 $ g,与其他独立估计的值相对应。 $ν_\ text {m} $和$ b $的获得的值确认了我们对光学范围内辐射的Blazar S5 0716+714区域的假设。

We present the results of multiband observations of the blazar S5 0716+714 intra-night variability performed during 23 nights in the period from 04.2014 through 04.2015. The bluer-when-brighter trend is detected in both intra- and inter-night data. We assume that the jet component crossing the region where the medium becomes transparent to the optical radiation forms almost all optical emission of S5 0716+714. Deviations of some parts of the component from the general trajectory of the component can cause the Doppler factor of these parts to increase. Various maximum Doppler factors achieved by these parts of the component and different volumes occupied by them with the concave synchrotron self-absorption spectrum result in both the observed various color index behavior in variability and explain the absence of dependence of the bluer-when-brighter behavior on the object magnitude. We estimated spectral maximum frequency $ν_\text{m}\approx\left( 0.6-1.7\right)\cdot10^{14}$ Hz from intra- and inter-night data. Assuming that the size of emitting region is comparable with the gravitational radius of a black hole with a mass of $5\cdot10^8$ solar masses, the magnetic field obtained from synchrotron self-absorption is $B\sim10^2-10^4$ G, which corresponds to the values of other independent estimations. The obtained values of $ν_\text{m}$ and $B$ confirm our assumption about the nature of the blazar S5 0716+714 region radiating in the optical range.

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