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Fermionic greybody factors and strong gravitational lensing by Lorentz-violating global monopole

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arxiv 2508.14861 v1 pith:3W23BKJU submitted 2025-08-20 gr-qc

Fermionic greybody factors and strong gravitational lensing by Lorentz-violating global monopole

classification gr-qc
keywords equationsangularmonopoleglobalstrongblackcomputedeflection
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this work, we study the greybody factors (GFs) of spin 1/2 and spin 3/2 fermions for a black hole with global monopole in self-interacting Kalb-Ramond gravity with Lorentz symmetry violation. For our purpose, we consider the Dirac and Rarita-Schwinger equations in curved spacetime by proceeding with separating these equations into sets of radial and angular equations. Using the analytical solution of the angular equation, the Schr\"{o}dinger-like wave equations with potentials are derived by decoupling the radial wave equations using the tortoise coordinate. Moreover, we calculate the angular deflection of light in the strong field limit. With the expression for angular deflection in the strong field limit, we compute the positions as well as magnification of the respective relativistic images. We compute the shadows cast by the Lorentz-violating (LV) black hole with a global monopole and analyze how the LV parameter and the monopole charge affect the shadows.

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