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Gravitational waveforms from periodic orbits around a dyonic ModMax black hole

Mirzabek AlloqulovHarbin Institute of TechnologySanjar ShaymatovNational Research University TIIAMEBobomurat AhmedovHarbin Institute of TechnologyTao ZhuUnited Center for Gravitational Wave Physics (UCGWP), Zhejiang University of Technology
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Abstract In this work, we study the gravitational waveforms from the periodic orbits of a massive particle around a dyonic ModMax black hole. We begin with a brief analysis of the spacetime and then examine how its parameters influence the dynamics of a massive neutral particle using the Lagrangian formalism. In particular, we compute the characteristics of marginally bound orbits and innermost stable circular orbits. Our results show that the values of these quantities increase with the black hole charge Q and the screening parameter $$\gamma $$ <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML"> <mml:mi>γ</mml:mi> </mml:math> . We then plot various periodic orbits, characterized by the integers ( z , w , v ). Finally, we present the gravitational waveforms associated with extreme mass ratio inspirals, consisting of a stellar-mass compact object orbiting a supermassive black hole.

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