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Deflection angle around generic traversable wormhole solutions and energy conditions in extended teleparallel theory of gravity

Yovqochev PahlavonNational Research University TIIAME, Kori Niyoziy 39, Tashkent 100000, UzbekistanFarruh AtamurotovAlfraganus University, Yukori Karakamish street 2a, Tashkent 100190, UzbekistanAbdelmalek BouzenadaLaboratory of Theoretical and Applied Physics, Echahid Cheikh Larbi Tebessi University 12001, AlgeriaAhmadjon AbdujabbarovNew Uzbekistan University, Movarounnahr street 1, Tashkent 100000, UzbekistanG. MustafaDepartment of Physics, Zhejiang Normal University, Jinhua 321004, People's Republic of China
Nuclear Physics Bjournal2025en
ABI

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This study explores traversable wormhole solutions within the framework of f ( T , T ) gravity, a generalized teleparallel theory that extends f ( T ) gravity by incorporating the trace of the energy-momentum tensor T . Adopting Weitzenbock geometry, we derive the field equations for a linear f ( T , T ) model and analyze Morris-Thorne wormhole geometries with two novel shape functions and a fractional redshift function. Violations of the null and strong energy conditions are illustrated, showing the presence of exotic matter near the wormhole throat, while the weak and dominant energy conditions are satisfied. Also, the effective potential for null and timelike geodesics reveals how particle trajectories depend on angular momentum, with deflection angle calculations demonstrating significant light bending near the throat. Numerical results show that increasing parameters in the shape functions enhance energy density and radial pressure violation, whereas larger redshift parameters reduce deflection angles at larger distances. Both shape function models support asymptotically flat and physically viable wormholes, with Model-I exhibiting stronger deflection effects.

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