论文标题
拓扑电荷和黑洞光子球
Topological Charge and Black Hole Photon Spheres
论文作者
论文摘要
黑洞光子球或灯环与天文现象紧密相关,例如重力波和球形对称或公理对称时空中的阴影。在Cunha和Herdeiro [物理学。莱特牧师。 124,181101(2020)],对四个维固定的,Axi对称,渐近平坦的黑洞应用了拓扑论证,结果表明至少在每个旋转范围内存在一个标准的光环。受其启发,在本文中,我们想考虑一个类似的问题,用于非旋转,球形,对称的黑洞,不仅具有渐近平坦的行为,而且还具有广告和DS行为。遵循Duan的拓扑当前$ ϕ $绘制理论,引入了光子球的拓扑电流和电荷。拓扑电流仅在确定光子球的位置的矢量场的零点为零。因此,每个光子球都可以分配一个拓扑电荷。考虑到整个外部区域,我们发现总拓扑电荷总是等于-1。该结果证实,在黑洞外部至少存在一个至少一个标准的光子球,不仅在渐近平坦的时空中,而且在渐近的广告和DS时空中也存在。然后,我们将研究应用于敌对的黑洞。我们观察到,即使包括更多的光子球,总拓扑电荷也保持不变。此外,对于裸露的奇异性,它具有消失的拓扑费,表明黑洞和裸露的奇异性在不同的拓扑类别中。可以预期,这种新颖的拓扑论点可以为黑洞光子球或光环的研究提供一个有见地的想法,并进一步在黑洞天文现象上散发出新的光。
Black hole photon spheres or light rings are closely linked to astronomical phenomena, such as the gravitational waves and the shadow in spherically symmetric or axi-symmetric spacetime. In Cunha and Herdeiro [Phys. Rev. Lett. 124, 181101 (2020)], a topological argument was applied for the four dimensional stationary, axi-symmetric, asymptotically flat black hole, and the result indicates that at least, there exists one standard light ring outside the black hole horizon for each rotation sense. Inspired by it, in this paper, we would like to consider a similar issue for a nonrotating, static, spherically symmetric black hole not only with asymptotically flat behavior, but also with AdS and dS behaviors. Following Duan's topological current $ϕ$-mapping theory, the topological current and charge for the photon spheres are introduced. The topological current is nonzero only at the zero point of the vector field determining the location of the photon sphere. So each photon sphere can be assigned a topological charge. Considering the full exterior region, we find the total topological charge always equals -1. This result confirms that there exists at least one standard photon sphere outside of the black hole not only in asymptotically flat spacetime, but also in asymptotically AdS and dS spacetime. Then we apply the study to the dyonic black holes. We observe that even when more photon spheres are included, the total topological charge stays unchanged. Moreover, for a naked singularity, it has a vanishing topological charge, indicating that the black hole and naked singularity are in different topological classes. It is expected that this novel topological argument could provide an insightful idea on the study of the black hole photon spheres or light rings, and further cast new light on the black hole astronomical phenomena.