Exploring the Existence of Non-Commutative Wormholes in Scalar Tensor Theories
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Date
2021
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Library Information Services, COMSATS University Islamabad, Lahore Campus
Abstract
Scalar tensor theories appear as handy candidate to analyze the stellar objects
like compact stars and wormholes. In this thesis, we have discussed about the
non commutative spherically symmetric wormhole solutions in f(R, Φ) gravity.
For this purpose, we consider two different frameworks such as Gaussian distri-
bution as well as Lorentzian distribution non commutative geometry. With the
help of Gaussian and Lorentzian distribution we have found the exact and nu-
merical solutions of the non commutative wormhole’s in f(R, Φ) gravity. By con-
sidering suitable values of the unknown parameters, we analyse the different
characteristics of the wormhole’s models analytically as well as graphically.It
has been observed that without involving any exotic material it is feasible to
acquire wormhole’s solution in this theory.For this purpose firstly we consid-
ered the different categories of fluids i.e an isotropic, anisotropic and barotropic
fluids. For all these fluids we analyzed the energy conditions to examine the
f(R, Φ) gravity. To check the energy conditions we have calculated b(r) numer-
ically as well as graphically in order to check whether the wormhole solutions
exist or not. It has been concluded that the solution we obtained is idealistic.
We have also analyzed the energy conditions (NEC and WEC) in detail. We
have concluded that for the existence of non commutative wormhole’s solution
these energy conditions are valid. And also for these cases, we observed that for
anisotropic fluid, realistic wormhole geometries can be constructed that satisfy
the energy conditions. We find the shape function which protects the worm-
hole throat and enables us to discuss the requirement of exotic matter. We also
analyze the energy constraints using the graphical schemes.
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Depatment of Mathematics, SP20, Mathematics, non-commutative geometry, wormholes, scalar–tensor theories, modified gravity, Dr. Muhammad Zubair