论文标题
阿尔玛(Alma)在2019年创纪录的耀斑期间对PKS1830-211的完全两极化观察结果
ALMA full polarization observations of PKS1830-211 during its record-breaking flare of 2019
论文作者
论文摘要
我们报告了2019年春季在其创纪录的广播电台和伽马射线的唱片中,对镜头Blazar PKS1830-211进行了Atacama-large-Millimeter-Array(ALMA)频段6的全偏度观察结果。观察结果接近伽玛活动的峰值,并显示了两个时间上的极性差异。领先的图像的分数极化比尾随图像低约三倍,这意味着在耀斑期间发生了显着的去极化。此外,我们观察到两个镜头图像之间极化特性的明显时间内变异性,其准线性在差分电载体位置角的准线性以每小时约两个度的速率增加,这与相对分数极化的变化约为10%。这种变异性与接近伽马活性峰值的较低极化相结合,与磁性湍流模型一致,以解释Blazar喷气机中的极化变异性。最后,对完整和差异化分析结果的结果比较证实,差异极化技术(Marti-Vidal等人,2016年)可以提供有关重力透镜射线射线大声星品等源的极化状态的有用信息。
We report Atacama-Large-millimeter-Array (ALMA) Band 6 full-polarization observations of the lensed blazar PKS1830-211 during its record-breaking radio and gamma-ray flare in the spring of 2019. The observations were taken close to the peak of the gamma activity and show a clear difference in polarization state between the two time-delayed images. The leading image has a fractional polarization about three times lower than the trailing image, implying that significant depolarization occurred during the flare. In addition, we observe clear intra-hour variability of the polarization properties between the two lensed images, with a quasi-linear increase of the differential electric-vector position angle at a rate of about two degrees per hour, associated with changes of the relative fractional polarization of ~10%. This variability, combined with the lower polarization close to the peak of gamma activity, is in agreement with models of magnetic turbulence to explain polarization variability in blazar jets. Finally, the comparison of results from the full and differential polarization analysis confirms that the differential polarization technique (Marti-Vidal et al. 2016) can provide useful information on the polarization state of sources like gravitationally lensed radio-loud quasars.