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Study of Static Wormhole Solutions in F(T,T_mathcal{G}) Gravity

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arxiv 1805.03528 v1 pith:LFKWBH3R submitted 2018-05-08 gr-qc

Study of Static Wormhole Solutions in F(T,T_mathcal{G}) Gravity

classification gr-qc
keywords solutionswormholemathcalfluidsgravitymatterparticularstatic
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In this paper, we investigate static spherically symmetric wormhole solutions in the background of $F(T,T_\mathcal{G})$ gravity ($T$ is the torsion scalar and $T_{\mathcal{G}}$ represents teleparallel equivalent of the Gauss-Bonnet term). We study the wormhole solutions by assuming four different matter contents, a specific redshift function and a particular $F(T,T_\mathcal{G})$ model. The behavior of null/weak energy conditions for these fluids is analyzed graphically. It turns out that wormhole solutions can be obtained in the absence of exotic matter for some particular regions of spacetime. We also explore stability of wormhole solutions through equilibrium condition. It is concluded that there exist physically acceptable wormhole solutions for anisotropic, isotropic and traceless fluids.

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  1. Thick branes and fermion localization in five-dimensional $f(T,T_G)$ gravity

    hep-th 2026-05 unverdicted novelty 6.0

    In 5D f(T, T_G) gravity, thick branes develop splitting and internal structure controlled by the coupling, while supporting a normalizable chiral fermion zero mode and modified resonant Kaluza-Klein states due to the ...