论文标题
参数估计和非电源kerr-sen黑洞的强重力镜头
Parameters estimation and strong gravitational lensing of nonsingular Kerr-Sen black holes
论文作者
论文摘要
最近的时间见证了黑洞对强力透镜的兴趣激增,这是由于事件地平线望远镜(EHT)的结果,这表明比较了一般相对性和异性弦理论中的黑洞镜头。这可能有助于我们评估这些模型之间的现象学差异。在此激励的情况下,我们考虑了非词性Kerr-Sen黑洞的引力镜头,该黑洞包括Kerr黑洞作为一种特殊情况,以计算强场限制的光偏转系数$ P $ $ P $和$ Q $,而前者随着$ K $ $ K $ $ k $ $ k $ $ b $的增加而增加。我们还发现,光偏转角$α_d$,角位置$θ_ {\ infty} $减小的降低速度较慢,并且对光子轨道$ u_ {m {m {m} $的影响参数更快,但是Angular Eaplation $ s $随着参数$ b $和$ k $而更快地增加。我们将我们的结果与Kerr黑洞的结果进行比较,并且在超级质量黑洞NGC 4649,NGC 1332,SGR A*和M87*的情况下,还应用了形式主义来讨论天体物理的后果。反过来,我们还调查了非词的Kerr-Sen黑洞的阴影,并表明它们比相应的Kerr黑洞和非词具Kerr黑洞阴影更小,更扭曲。推断的圆形偏差$ΔC\ leq 0.10 $,对于M87*黑洞的阴影,在非词的Kerr-Sen黑洞参数($ a,k $)和($ a,b $)上放置约束。 $ b = 0.30m $和$ k = 0.30m $的最大阴影角直径分别为$θ_d= 35.3461 \,μ$ as和$θ_d= 35.3355 \,μ$ as。我们还估计使用阴影可观察物的非源性Kerr-Sen黑洞相关的参数。
The recent time witnessed a surge of interest in strong gravitational lensing by black holes is due to the Event Horizon Telescope (EHT) results, which suggest comparing the black hole lensing in both general relativity and heterotic string theory. That may help us to assess the phenomenological differences between these models. Motivated by this, we consider gravitational lensing by the nonsingular Kerr-Sen black holes, which encompass Kerr black holes as a particular case, to calculate the light deflection coefficients $p$ and $q$ in strong-field limits, while the former increases with increasing parameters $k$ and charge $b$, later decrease. We also find a decrease in the light deflection angle $α_D$, angular position $θ_{\infty}$ decreases more slowly and impact parameter for photon orbits $u_{m}$ more quickly, but angular separation $s$ increases more rapidly with parameters $b$ and $k$. We compare our results with those for Kerr black holes, and also the formalism is applied to discuss the astrophysical consequences in the case of the supermassive black holes NGC 4649, NGC 1332, Sgr A* and M87*. In turn, we also investigate the shadows of the nonsingular Kerr-Sen black holes and show that they are smaller and more distorted than the corresponding Kerr black holes and nonsingular Kerr black holes shadows. The inferred circularity deviation $ΔC\leq 0.10$, for the M87* black hole shadow, put constraints on the nonsingular Kerr-Sen black hole parameters ($a, k$) and ($a, b$). The maximum shadow angular diameter for $b=0.30M$ and $k=0.30M$ are, respectively, $θ_d=35.3461\,μ$as and $θ_d=35.3355\,μ$as. We also estimate the parameters associated with nonsingular Kerr-Sen black holes using the shadow observables.