论文标题

通过SGR A $^\ star $观察测试BORN-INFELD $ f(t)$ teparalleal重力

Testing Born-Infeld $f(T)$ teleparallel gravity through Sgr A$^\star$ observations

论文作者

Jusufi, Kimet, Capozziello, Salvatore, Bahamonde, Sebastian, Jamil, Mubasher

论文摘要

我们使用来自银河系中心周围的S2恒星旋转的观察数据来限制扩展触发性重力模型的黑洞解决方案。随后,我们构造了$^{\ star} $黑洞的阴影图像。特别是,我们限制了出现在in-Infeld $ f(t)$模型中的参数$α= 1/λ$。在强大的重力状态下,我们发现阴影半径随着参数$α$的增加而增加。具体来说,从S2星观测到,我们在1 $σ$中找到该参数必须位于$ 0 \ leqleqα/m^2 \ leq 6 \ times 10^{ - 4} $之间。因此,我们使用最佳拟合参数来对SGR的阴影图像进行建模$^{\ star} $黑洞,然后使用Gauss-Bonnet定理,我们分析了参数$α$的领先顺序扩展的偏转角。发现在参数范围内,这些可观察到的物品非常接近Schwarzschild案例。此外,使用最佳拟合参数,用于出生的infeld $ f(t)$型号,我们显示角直径与SGR A $^{\ star} $ Black Hole Angular Diamety $(51.8 \ pm 2.3)μ$ ARCSEC的最新观察结果一致,并且很难区分GR。对于偏转角,以领先的顺序术语,我们发现在ADM质量中表达的偏转角与GR相吻合,但是Born-Infeld $ f(t)$重力中的ADM质量随着$α$的增加而增加,预计我在$ f(t)$ GRAVITY中会更大。由于这一事实,我们已经表明,与GR相比,在影像中观察到的电磁强度较小。

We use observational data from the S2 star orbiting around the Galactic Center to constrain a black hole solution of extended teleparallel gravity models. Subsequently, we construct the shadow images of Sgr A$^{\star}$ black hole. In particular, we constrain the parameter $α=1/λ$ which appears in the Born-Infeld $f(T)$ model. In the strong gravity regime we find that the shadow radius increases with the increase of the parameter $α$. Specifically, from the S2 star observations, we find within 1$σ$ that the parameter must lie between $0 \leq α/M^2 \leq 6 \times 10^{-4}$. Consequently, we used the best fit parameters to model the shadow images of Sgr A$^{\star}$ black hole and then using the Gauss-Bonnet theorem we analysed the deflection angle for leading order expansions of the parameter $α$. It is found that within the parameter range, these observables are very close to the Schwarzschild case. Furthermore, using the best fit parameters for the Born-Infeld $f(T)$ model we show the angular diameter is consistent with recent observations for the Sgr A$^{\star}$ black hole angular diameter $(51.8 \pm 2.3) μ$arcsec and difficult to be distinguished from the GR. For the deflection angle of light, in leading order terms, we find that the deflection angle expressed in the ADM mass coincides with the GR, but the ADM mass in the Born-Infeld $f(T)$ gravity increases with the increase of $α$ and the overall deflection angle is expected to me greater in $f(T)$ gravity. As a consequence of this fact, we have shown that the electromagnetic intensity observed in shadow images is smaller compared to GR.

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