Stability analysis and quasinormal modes of Reissner Nordstr{\o}m Space-time via Lyapunov exponent
Parthapratim Pradhan

TL;DR
This paper derives Lyapunov exponents for Reissner Nordström black holes, analyzes their ratios for different orbits, and links these to quasinormal modes, providing insights into geodesic stability and black hole perturbations.
Contribution
It introduces explicit formulas for Lyapunov exponents in RN spacetime and explores their variation across different orbits, connecting geodesic instability to quasinormal modes.
Findings
Ratio of Lyapunov exponents varies with orbit type.
At ISCO, the ratio for Schwarzschild is √2.
In the eikonal limit, QNM frequencies relate to geodesic instability.
Abstract
We explicitly derive the proper time principal Lyapunov exponent () and coordinate time () principal Lyapunov exponent () for Reissner Nordstr{\o}m (RN) black hole (BH) . We also compute their ratio. For RN space-time, it is shown that the ratio is for time-like circular geodesics and for Schwarzschild BH it is . We further show that their ratio may vary from orbit to orbit. For instance, Schwarzschild BH at innermost stable circular orbit(ISCO), the ratio is and at marginally bound circular orbit (MBCO) the ratio is calculated to be . Similarly, for extremal RN…
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