论文标题

赤道发射的两极分化图像在无水平的空间I:可遍布的虫洞

Polarized image of equatorial emission in horizonless spacetimes I: traversable wormholes

论文作者

Delijski, Valentin, Gyulchev, Galin, Nedkova, Petya, Yazadjiev, Stoytcho

论文摘要

我们研究了一类静态遍历虫洞周围的积聚盘的线性极化。我们在赤道平面中应用磁性流体环的简化模型,我们搜索特征性特征,这可以通过其极化特性区分虫洞与黑洞的空位。出于目的,我们分析了不同倾斜角,强烈的间接图像的直接极化图像以及通过虫洞喉咙到达渐近观察者的极化辐射,并与Schwarzschild黑洞进行比较。对于小倾斜角,两种类型的紧凑物体导致直接图像的极化模式非常相似。对于强烈镜头的间接图像,观察到更显着的区别,与Schwarzschild黑洞相比,虫洞空间中的极化强度可以增长到数量级。从虫孔喉咙透过区域检测辐射会导致形成具有独特极化特性的环图像的附加结构。极化矢量围绕环的扭曲不太明显,从而改变了极化模式,与我们宇宙的辐射相比,极化强度可以随着数量级而增加。因此,尽管很难通过其直接极化图像来区分虫孔的空间,但通过虫洞喉咙的强烈镜头图像和辐射的极化提供了特征性的特征,可以用作无水平物体的探针。

We study the linear polarization from the accretion disk around a class of static traversable wormholes. Applying the simplified model of a magnetized fluid ring orbiting in the equatorial plane, we search for characteristic signatures, which could distinguish wormhole from black hole spacetimes by their polarization properties. For the purpose we analyse the direct polarized images for different inclination angles, the strongly lensed indirect images, and the polarized radiation which reaches the asymptotic observer through the wormhole throat, and compare to the Schwarzschild black hole. For small inclination angles the two types of compact objects lead to a very similar polarization pattern of the direct images. More significant distinctions are observed for the strongly lensed indirect images, where the polarization intensity in the wormhole spacetimes can grow up to an order of magnitude compared to the Schwarzschild black hole. Detecting radiation from the region across the wormhole throat leads to the formation of an additional structure of ring images with distinct polarization properties. The twist of the polarization vector around the ring is less pronounced, thus modifying the polarization pattern, and the polarization intensity can increase with an order of magnitude compared to the radiation from our universe. Thus, while it could be difficult to distinguish wormhole spacetimes by their direct polarized images, the strongly lensed images and the polarization of the radiation through the wormhole throat provide characteristic signatures which can serve as probes for horizonless objects.

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