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Static Wormhole Solutions and Noether Symmetry in Modified Gauss-Bonnet Gravity

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arxiv 2008.07327 v1 pith:NDTGY4T6 submitted 2020-08-14 gr-qc

Static Wormhole Solutions and Noether Symmetry in Modified Gauss-Bonnet Gravity

classification gr-qc
keywords mathcalgauss-bonnetmodelstraversablewormholewormholesenergyexponential
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper, we analyze static traversable wormholes via Noether symmetry technique in modified Gauss-Bonnet $f(\mathcal{G})$ theory of gravity (where $\mathcal{G}$ represents Gauss-Bonnet term). We assume isotropic matter configuration and spherically symmetric metric. We construct three $f(\mathcal{G})$ models, i.e, linear, quadratic and exponential forms and examine the consistency of these models. The traversable nature of wormhole solutions is discussed via null energy bound of the effective stress-energy tensor while physical behavior is studied through standard energy bounds of isotropic fluid. We also discuss the stability of these wormholes inside the wormhole throat and conclude the presence of traversable and physically stable wormholes for quadratic as well as exponential $f(\mathcal{G})$ models.

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