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Particle Dynamics Near Kerr-MOG Black Hole

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arxiv 1705.03058 v1 pith:T4N745TN submitted 2017-05-08 gr-qc

Particle Dynamics Near Kerr-MOG Black Hole

classification gr-qc
keywords particleblackdynamicsholeneareffectivefieldgravity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This paper explores the dynamics of both neutral as well as charged particles orbiting near a rotating black hole in scalar-tensor-vector gravity. We study the conditions for the particle to escape at the innermost stable circular orbit. We investigate stability of orbits through effective potential and Lyapunov exponent in the presence of magnetic field. The effective force acting on particle is also discussed. We also study the center of mass energy of particle collision near the horizon of this black hole. Finally, we compare our results with the particle motion around Schwarzschild, Kerr and Schwarzschild-MOG black holes. It is concluded that the external magnetic field, spin parameter as well as dimensionless parameter of the theory have strong effects on particle dynamics in modified gravity.

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