论文标题

带电的四维高斯河网状黑洞的光学外观,带有弦云和非交通性几何形状,周围有各种积聚曲线

The Optical Appearance of Charged Four-Dimensional Gauss-Bonnet Black Hole with Strings Cloud and Non-Commutative Geometry Surrounded by Various Accretions Profiles

论文作者

Zeng, Xiao-Xiong, Aslam, M. Israr, Saleem, Rabia

论文摘要

感谢您在$ M87 $ Galaxy的核心的活动Horizo​​n Telescope(EHT)上发布了超大型黑洞(BHS)的图像。在发现这个神秘的对象之后,科学家们关注探索不同引力背景下的BH阴影特征。在这种情况下,我们研究了BH阴影的灯环和观察性特性,周围是不同的吸积流模型,然后研究模型参数对我们考虑系统框架中BHS的观测显示和时空结构的影响。在发射曲线的不兼容配置下,BHS的图像包括观察到的光度主要由直接发射确定,而镜头环将提供总观察到的通量和光子环的少量贡献,并且由于其指数较窄,因此可忽略不计。更重要的是,在参数的变化下,观察到的所有发射曲线的区域和特定强度会相应地更改。对于光学上的积分问题,我们分别通过静态和插入积分模型分析了阴影的轮廓和特定强度。我们发现,由于输入运动的多普勒效应,通过插入的运动,阴影的内部区域将比静态情况更暗。最后,可以得出结论,这些发现支持BH状态参数的更改将改变时空几何形状的方式,从而影响BH阴影动力学。

Thanks for the releasing image of supermassive black holes (BHs) by the event horizon telescope (EHT) at the heart of the $M87$ galaxy. After the discovery of this mysterious object, scientists paid attention to exploring the BH shadow features under different gravitational backgrounds. In this scenario, we study the light rings and observational properties of BH shadow surrounded by different accretion flow models and then investigate the effect of model parameters on the observational display and space-time structure of BHs in the framework of our considering system. Under the incompatible configuration of the emission profiles, the images of BHs comprise that the observed luminosity is mainly determined by direct emission, while the lensing ring will provide a small contribution of the total observed flux and the photon ring makes a negligible contribution due to its exponential narrowness. More importantly, the observed regions and specific intensities of all emission profiles are changed correspondingly under variations of parameters. For optically thin accreting matters, we analyze the profile and specific intensity of the shadows with static and infalling accretions models, respectively. We find that with an infalling motion the interior region of the shadows will be darker than in a static case, due to the Doppler effect of the infalling movement. Finally, it is concluded that these findings support that the change of BH state parameters will change the way of space-time geometry, thus affecting the BH shadows dynamics.

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