论文标题
GUP的半大模式和鹰辐射稀疏性在黄蜂重力中校正了黑洞,拓扑缺陷
Quasinormal Modes and Hawking Radiation Sparsity of GUP corrected Black Holes in Bumblebee Gravity with Topological Defects
论文作者
论文摘要
我们已经获得了具有拓扑缺陷的Bumblebee Gravity中的广义不确定性原理(GUP)校正的DE Sitter和Anti-DE Sitter Black Hole溶液。我们已经计算了使用Padé平均第六阶WKB近似方法的标量,电磁和重力准模式。除此之外,研究了所有三个扰动的时间演变,并使用时域配置文件计算了准模式。我们发现,一阶和二阶Gup参数$α$和$β$,对准模式产生了相反的影响。该研究还发现,全球单极的存在可以显着降低准频率,并且衰减率显着降低。另一方面,洛伦兹对称性违规对准频率和衰减速率产生了明显的影响。我们研究了黑洞的灰体因素,功率谱和稀疏性,所有三种扰动都消失了有效宇宙常数。 Lorentz对称性破坏和GUP参数$α$的存在减少,而其他GUP参数$β$和全球单极的存在增加了鹰辐射到达空间无穷大的可能性。洛伦兹违规的存在会使黑洞的稀疏少,而全球单极的存在可以增加黑洞的稀疏性。此外,我们已经看到,黑洞面积量化规则是通过洛伦兹对称性破裂而修改的。
We have obtained the Generalized Uncertainty Principle (GUP) corrected de Sitter and anti-de Sitter black hole solutions in bumblebee gravity with a topological defect. We have calculated the scalar, electromagnetic and gravitational quasinormal modes for the both vanishing and non-vanishing effective cosmological constant using Padé averaged sixth order WKB approximation method. Apart from this, the time evolutions for all three perturbations are studied, and quasinormal modes are calculated using the time domain profile. We found that the first order and second order GUP parameters $α$ and $β$, respectively have opposite impacts on the quasinormal modes. The study also finds that the presence of a global monopole can decrease the quasinormal frequencies and the decay rate significantly. On the other hand, Lorentz symmetry violation has noticeable impacts on the quasinormal frequencies and the decay rate. We have studied the greybody factors, power spectrum and sparsity of the black hole with the vanishing effective cosmological constant for all the three perturbations. The presence of Lorentz symmetry breaking and the GUP parameter $α$ decrease, while other GUP parameter $β$ and the presence of global monopole increase the probability of Hawking radiation to reach the spatial infinity. The presence of Lorentz violation can make the black holes less sparse, while the presence of a global monopole can increase the sparsity of the black holes. Moreover, we have seen that the black hole area quantization rule is modified by the presence of Lorentz symmetry breaking.