Time Delay of Pulsar Signals in Astrophysical Black Hole Spacetimes
Parth Bambhaniya, Viraj Kalsariya, Saurabh, Elisabete M. de Gouveia Dal Pino, Ivan De Martino, Riccardo Della Monica, and Mariafelicia De Laurentis

TL;DR
This study analyzes the relativistic time delay of pulsar signals near rotating black holes and their mimickers, identifying potential observational signatures to distinguish between different spacetime geometries using upcoming telescopes.
Contribution
It provides a comparative analysis of pulsar signal delays in Kerr, deformed Kerr, and JNW spacetimes, highlighting subtle effects of spin and deformation parameters.
Findings
Small but detectable effects of spin on time delay differences.
Potential observational signatures to differentiate black hole geometries.
Relevance for future observational facilities like SKA, EHT, and FAST.
Abstract
In this paper, we investigate the fully relativistic time delay of pulsar signals propagating in the vicinity of a rotating black hole and its potential mimickers, including a deformed Kerr black hole and the Janis-Newman-Winicour naked singularity. We aim to compute and compare the pulsar time delays caused by different spacetime geometries to explore possible observational signatures that distinguish between black holes and their alternatives. We begin by solving the equations of motion for null geodesics in these background geometries. Subsequently, we address the emitter-observer problem to compute the time delay of pulsar signals in Kerr, deformed Kerr, and JNW spacetimes. A comparative analysis between Schwarzschild and Kerr black holes allows us to observe the effect of spin on propagation delay in pulsar timing. Further, we examine the impact of the deformation parameter in the…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Astrophysical Phenomena and Observations · Relativity and Gravitational Theory
