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首页> 外文期刊>Astronomy and astrophysics >Optical polarization of high-energy BL Lacertae objects
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Optical polarization of high-energy BL Lacertae objects

机译:高能BL Lacertae物体的光偏振

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Context. We investigate the optical polarization properties of high-energy BL Lac objects using data from the RoboPol blazar monitoring program and the Nordic Optical Telescope. Aims. We wish to understand if there are differences between the BL Lac objects that have been detected with the current-generation TeV instruments and those objects that have not yet been detected. Methods. We used a maximum-likelihood method to investigate the optical polarization fraction and its variability in these sources. In order to study the polarization position angle variability, we calculated the time derivative of the electric vector position angle (EVPA) change. We also studied the spread in the Stokes Q / I ? U / I plane and rotations in the polarization plane. Results. The mean polarization fraction of the TeV-detected BL Lacs is 5%, while the non-TeV sources show a higher mean polarization fraction of 7%. This difference in polarization fraction disappears when the dilution by the unpolarized light of the host galaxy is accounted for. The TeV sources show somewhat lower fractional polarization variability amplitudes than the non-TeV sources. Also the fraction of sources with a smaller spread in the Q / I ? U / I plane and a clumped distribution of points away from the origin, possibly indicating a preferred polarization angle, is larger in the TeV than in the non-TeV sources. These differences between TeV and non-TeV samples seem to arise from differences between intermediate and high spectral peaking sources instead of the TeV detection. When the EVPA variations are studied, the rate of EVPA change is similar in both samples. We detect significant EVPA rotations in both TeV and non-TeV sources, showing that rotations can occur in high spectral peaking BL Lac objects when the monitoring cadence is dense enough. Our simulations show that we cannot exclude a random walk origin for these rotations. Conclusions. These results indicate that there are no intrinsic differences in the polarization properties of the TeV-detected and non-TeV-detected high-energy BL Lac objects. This suggests that the polarization properties are not directly related to the TeV-detection, but instead the TeV loudness is connected to the general flaring activity, redshift, and the synchrotron peak location.
机译:上下文。我们使用来自RoboPol blazar监测程序和Nordic Optical Telescope的数据研究高能BL Lac对象的光学偏振特性。目的我们希望了解当前的TeV仪器检测到的BL Lac对象与尚未检测到的对象之间是否存在差异。方法。我们使用最大似然法来研究这些光源中的光学偏振度及其变化性。为了研究偏振位置角的可变性,我们计算了电矢量位置角(EVPA)变化的时间导数。我们还研究了Stokes Q / I中的点差? U / I平面和偏振平面中的旋转。结果。 TeV检测到的BL Lacs的平均极化分数为5%,而非TeV光源显示的平均极化分数更高,为7%。当考虑到宿主星系的非偏振光的稀释时,偏振分数的这种差异消失了。与非TeV光源相比,TeV光源显示的偏光分数变异性幅度略低。还有Q / I分布较小的源的一部分吗? U / I平面和远离原点的成簇分布(可能表示首选的偏振角)在TeV中比在非TeV源中更大。 TeV和非TeV样本之间的这些差异似乎是由中峰和高光谱峰源之间的差异而不是TeV检测引起的。在研究EVPA变化时,两个样品的EVPA变化率相似。我们在TeV和非TeV源中检测到显着的EVPA旋转,表明当监视节奏足够密集时,旋转可能发生在高光谱峰值BL Lac对象中。我们的模拟表明,对于这些旋转,我们不能排除随机游走原点。结论。这些结果表明,在TeV检测的和非TeV检测的高能BL Lac物体的偏振特性中没有内在差异。这表明极化特性与TeV检测并不直接相关,而是与TeV响度与一般的扩口活动,红移和同步加速器峰值位置有关。

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