论文标题

AGN喷气机的各种偏光特征从各种视角:统一视图

Diverse Polarimetric Features of AGN Jets from Various Viewing Angles: Towards a Unified View

论文作者

Tsunetoe, Yuh, Mineshige, Shin, Kawashima, Tomohisa, Ohsuga, Ken, Akiyama, Kazunori, Takahashi, Hiroyuki R.

论文摘要

在这里,我们证明了极化特性根据视角显示了广泛的多样性。为了模拟超质量黑洞和周围等离子体的图像,我们基于具有适度磁强度的三维一般相对论磁性水力动力学模型,进行了全偏光相对论辐射转移。在电子温度处方中的热喷射和冷盘的假设下,我们证实了典型的情况,其中漏斗喷气机的极化同步加速器的排放体验了赤道磁盘中的法拉第旋转和转换。此外,我们发现线性极化向量不可避免地将其去极化,以使其类似边缘的观察者去极化,而一部分向量的载体存活并在类似的情况下触及观察者。我们还发现,圆形极化成分在面对面的情况下具有持久的迹象,并且在边缘案例中发生了变化的迹象。证实这些特征是通过中间观看角案例平稳连接的。这些结果是由于法拉第旋转/转换的不同视角,并表明线性和圆形极化法可以对观察者和黑洞的倾斜度(和/或磁盘(和/或磁盘)(和/或磁盘)(和/或磁盘)旋转轴和等离子体的特性产生限制。这些也可能导致对活性银河核的多种排放的更统计和统一的解释。

Here, we demonstrate that polarization properties show a wide diversity depending on viewing angles. To simulate images of a supermassive black hole and surrounding plasma, we performed a full-polarimetric general relativistic radiative transfer based on three-dimensional general relativistic magnetohydrodynamics models with moderate magnetic strengths. Under an assumption of a hot-jet and cold-disk in the electron temperature prescription, we confirmed a typical scenario where polarized synchrotron emissions from the funnel jet experience Faraday rotation and conversion in the equatorial disk. Further, we found that linear polarization vectors are inevitably depolarized for edge-on-like observers, whereas a portion of vectors survive and reach the observers in face-on-like cases. We also found that circular polarization components have persistent signs in the face-on cases, and changing signs in the edge-on cases. It is confirmed that these features are smoothly connected via intermediate viewing-angle cases. These results are due to Faraday rotation/conversion for different viewing angles, and suggest that a combination of linear and circular polarimetry can give a constraint on the inclination between the observer and black hole's (and/or disk's) rotating-axis and plasma properties in the jet--disk structure. These can also lead to a more statistical and unified interpretation for a diversity of emissions from active galactic nuclei.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源