Modeling Wormholes Generated by Dark Matter Galactic Halos in f(R)$f(R)$ Modified Gravity

Author:

Errehymy Abdelghani12ORCID,Maurya Sunil Kumar3,Hansraj Sudan1,Daoud Mohammed45,Alrebdi Haifa I.6,Abdel‐Aty Abdel‐Haleem7

Affiliation:

1. Astrophysics Research Centre, School of Mathematics Statistics and Computer Science University of KwaZulu‐Natal Private Bag X54001 Durban 4000 South Africa

2. Laboratory of High Energy Physics and Condensed Matter Department of Physics, Faculty of Sciences Aïn Chock Hassan II University of Casablanca B.P. 5366 Maarif Casablanca 20100 Morocco

3. Department of Mathematical and Physical Sciences College of Arts and Sciences University of Nizwa P.O. Box 33 Nizwa 616 Sultanate of Oman

4. Department of Physics, Faculty of Sciences Ibn Tofail University P.O. Box 133 Kenitra 14000 Morocco

5. Abdus Salam International Centre for Theoretical Physics, Miramare Trieste 34151 Italy

6. Department of Physics, College of Science Princess Nourah bint Abdulrahman University P.O. Box 84428 Riyadh 11671 Saudi Arabia

7. Department of Physics College of Sciences University of Bisha P.O. Box 344 Bisha 61922 Saudi Arabia

Abstract

AbstractWormholes (WHs) are hypothetical topologically non‐trivial spacetime structures that can be freely traversed by observers and connect two asymptotic regions or infinities. From the current theoretical development, the prospect of their existence is challenging but cannot be excluded. In this paper, generalized Ellis–Bronikov (GEB) traversable WH geometries for static and spherically symmetric spacetime in the background of gravity is explored. First, the Tsujikawa‐like model and the shape function for the GEB model is considered, which depend on a sequence of simple Lorentzian WHs with two parameters: a free even integer exponent, n, besides the throat radius, r0. One also consider that these WHs are generated by dark matter galactic halos (DMGHs), based on the three most common phenomenological models, viz., Navarro–Frenk–White (NFW), Thomas–Fermi (TF), and pseudo‐isothermal (PI). In this concern, the satisfaction of the energy conditions (ECs) which are dependent on the dark matter (DM) models, viz., dominant energy condition (DEC) and strong energy condition (SEC) and those which are not dependent viz., null energy condition (NEC) and WEC at the WH throat and its neighborhood is investigated. Finally, the presence of exotic matter is confirmed by the violation of the NEC in all cases, revealing the supremacy and physical acceptability to support the existence of the WHs and making them compatible and traversable in Tsujikawa's‐like  model.

Publisher

Wiley

Subject

General Physics and Astronomy

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