论文标题

常规黑洞领域中的无效测量和QNM

Null Geodesics and QNMs in the field of Regular Black Holes

论文作者

Mondal, Monimala, Yadav, Anil Kumar, Pradhan, Parthapratim, Islam, Sayeedul, Rahaman, Farook

论文摘要

我们分析了常规黑洞的无效测量学。已经研究了对上述黑洞的详细分析,对无效的大地测量学和类似时间的大地测量学分析。作为无效测量学的应用,我们计算光子球的半径和光的重力弯曲。我们还研究黑洞时空的阴影。此外,我们确定光子球的半径〜$(r_ {ps})$与距离观察者观察到的阴影之间的关系。此外,我们将各种参数对阴影$ r_s $半径的影响进行了讨论。另外,我们将光子的偏转角度作为零圆形测量学的物理应用。我们通过计算Lyapunov指数,发现eikonal近似中的零测量学和准模式之间的关系。还表明〜(在Eikonal极限中)黑洞的准模式〜(QNM)受零圆形测量学参数的控制。 QNMS频率的实际部分决定了角频率,而虚部则决定了圆形轨道的不稳定性时间尺度。接下来,我们研究无质量标量扰动,并以图形方式分析有效势。还讨论了大规模的标量扰动。作为时间样的大地学的应用,我们计算了常规BHS的最内向稳定的圆形轨道〜(ISCO)和略有结合的圆形轨道〜(MBCO),这些轨道〜(MBCO)与黑洞积聚磁盘理论密切相关。在附录中,我们计算了无圆形测量学的角频率和Lyapunov指数之间的关系。

We analyze the null geodesics of regular black holes. A detailed analysis of geodesic structure both null geodesics and time-like geodesics have been investigated for the said black hole. As an application of null geodecics, we calculate the radius of photon sphere and gravitational bending of light. We also study the shadow of the black hole spacetime. Moreover, we determine the relation between radius of photon sphere~$(r_{ps})$ and the shadow observed by a distance observer. Furthermore, We discus the effect of various parameters on the radius of shadow $R_s$. Also we compute the angle of deflection for the photons as a physical application of null-circular geodesics. We find the relation between null geodesics and quasinormal modes frequency in the eikonal approximation by computing the Lyapunov exponent. It is also shown that~(in the eikonal limit) the quasinormal modes~(QNMs) of black holes are governed by the parameter of null-circular geodesics. The real part of QNMs frequency determines the angular frequency whereas the imaginary part determines the instability time scale of the circular orbit. Next we study the massless scalar perturbations and analyze the effective potential graphically. Massive scalar perturbations also discussed. As an application of time-like geodesics we compute the innermost stable circular orbit~(ISCO) and marginally bound circular orbit~(MBCO) of the regular BHs which are closely related to the black hole accretion disk theory. In the appendix, we calculate the relation between angular frequency and Lyapunov exponent for null-circular geodesics.

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