论文标题

Q-Metric周围的阴影

Shadows around the q-metric

论文作者

Arrieta-Villamizar, J. A., Velásquez-Cadavid, J. M., Pimentel, O. M., Lora-Clavijo, F. D., Gutiérrez-Piñeres, A. C.

论文摘要

相对论天体物理学中的一个关键问题是黑洞候选人的性质。通常假定天体物理黑洞是由施瓦茨柴尔德(Schwarzschild)或凯尔(Kerr)空间时间描述的。但是,没有直接的证据来主张这一点。此外,总体相对论中有多种解决方案可以作为黑洞的替代方案,通常称为黑洞模仿。在这项工作中,我们研究了由Q-Metric描述的紧凑对象产生的阴影,这是爱因斯坦方程最简单的静态和轴向对称解,具有非变化的四极力矩。该特定的时空具有包含独立参数$ Q $的属性,该参数$ Q $与紧凑的对象变形有关。该解决方案对应于此参数的某些特定值的裸奇异点。此外,我们使用$ SO(3,c)$表示,分析了Riemann张量的特征值,这使我们能够以不变的方式找到可能产生排斥作用的区域。此外,我们通过数值求解运动方程,以显示阴影,爱因斯坦环和重力镜头,以建立这种排斥效应的可能特征。我们发现,随着$ Q $的较小,爱因斯坦环降低了,但形状与Schwarzschild黑洞外壳相同。但是,对于$ q $低或等于$ -0.5 $的$ q $的值,在紧凑型物体附近的重力透镜中出现了排斥引力效应,在这种情况下,系统对初始条件的强烈依赖似乎发生了。

One crucial problem in relativistic astrophysics is that of the nature of black hole candidates. It is usually assumed that astrophysical black holes are described by the Schwarzschild or Kerr space-times; however, there is no direct evidence to assert this. Moreover, there are various solutions in general relativity that can be alternatives to black holes, usually called black hole mimickers. In this work, we study the shadow produced by a compact object described by the q-metric, which is the simplest static and axially symmetric solution of Einstein equations with a non-vanishing quadrupole moment. This particular spacetime has the property of containing an independent parameter $q$, which is related to the compact object deformation. The solution corresponds to naked singularities for some specific values of this parameter. Additionally, we analyze the eigenvalues of the Riemann tensor using the $SO(3,C)$ representation, which allows us to find, in an invariant way, regions where there may be repulsive effects. Furthermore, we numerically solve the motion equations to show the shadow, the Einstein ring, and the gravitational lensing to establish a possible signature of such repulsive effects. We found that as $q$ is smaller, the Einstein ring decreases, but the shape is the same as the Schwarzschild black hole case. However, for values of $q$ lower or equal than $-0.5$, repulsive gravitational effects appear in the gravitational lensing close to the compact object, where a strong dependence of the system to the initial conditions seems to take place.

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