论文标题

在基于RICCI的重力中产生旋转时空:裸奇异性作为黑洞模仿

Generating Rotating Spacetime in Ricci-Based Gravity: Naked Singularity as a Black Hole Mimicker

论文作者

Shao, Wei-Hsiang, Chen, Che-Yu, Chen, Pisin

论文摘要

由于缺乏旋转解决方案的动机以及在一般相对论以及修改的重力理论中提供的旋转解决方案,我们将最近发现的最小爱因斯坦 - 刻画理论的精确旋转溶液扩展到了其在爱丁顿启发的Born In-Feld Grartity中的对应物,该重力伴随着bort beal selar scalar scalar领域。这是通过实施基于RICCI的Palatini理论的重力和一般相对性的解决方案之间实施完善的映射来完成的。除了紧凑型物体的质量和自旋外,新的解决方案是通过标量电荷和出生式焊接耦合常数来参数化的。与映射之前的时空相比,我们发现Born-Infeld量表的高能修饰能够抑制,但不能消除原始Naked Null Null奇点的曲率差异。根据出生式耦合常数的迹象,这些修改甚至可能导致零值的额外的奇异性外观。尽管如此,在映射之前和之后的两个裸奇异点都能铸造阴影,并且由于映射关系,它们的阴影变得与赤道平面上的遥远观察者所看到的相同。即使标量场诱导了阴影的外观,其左右端点固定了固定的左右端点,但阴影轮廓的闭合度条件在标量电荷的绝对值上设置了一个小的上限,这会导致阴影的观察性特征非常像Kerr黑洞的阴影。

Motivated by the lack of rotating solutions sourced by matter in General Relativity as well as in modified gravity theories, we extend a recently discovered exact rotating solution of the minimal Einstein-scalar theory to its counterpart in Eddington-inspired Born-Infeld gravity coupled to a Born-Infeld scalar field. This is accomplished with the implementation of a well-developed mapping between solutions of Ricci-Based Palatini theories of gravity and General Relativity. The new solution is parametrized by the scalar charge and the Born-Infeld coupling constant apart from the mass and spin of the compact object. Compared to the spacetime prior to the mapping, we find that the high-energy modifications at the Born-Infeld scale are able to suppress but not remove the curvature divergence of the original naked null singularity. Depending on the sign of the Born-Infeld coupling constant, these modifications may even give rise to an additional timelike singularity exterior to the null one. In spite of that, both of the naked singularities before and after the mapping are capable of casting shadows, and as a consequence of the mapping relation, their shadows turn out to be identical as seen by a distant observer on the equatorial plane. Even though the scalar field induces a certain oblateness to the appearance of the shadow with its left and right endpoints held fixed, the closedness condition for the shadow contour sets a small upper bound on the absolute value of the scalar charge, which leads to observational features of the shadow closely resembling those of a Kerr black hole.

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