How a conformally flat (GR)4 impacts gauss-bonnet gravity?
First and foremost, we show that a 4-dimensional conformally flat generalized Ricci recurrent spacetime (GR)4 is an Einstein manifold. We examine such a spacetime as a solution of f(R,G)-gravity theory and it is shown that the additional terms from the modification of the gravitational sector can be...
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Wiley-V C H Verlag GMBH
2021
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my.um.eprints.264642022-03-04T03:09:10Z http://eprints.um.edu.my/26464/ How a conformally flat (GR)4 impacts gauss-bonnet gravity? De, Avik Loo, Tee-How Solanki, Raja Sahoo, P. K. QA Mathematics First and foremost, we show that a 4-dimensional conformally flat generalized Ricci recurrent spacetime (GR)4 is an Einstein manifold. We examine such a spacetime as a solution of f(R,G)-gravity theory and it is shown that the additional terms from the modification of the gravitational sector can be expressed as a perfect fluid. Several energy conditions are investigated with f(R,G)=R+G and f(R,G)=R2+GlnG. For both the models, weak, null and dominant energy conditions are satisfied while strong energy condition is violated, which is a good agreement with the recent observational studies which reveals that the current universe is in accelerating phase. Wiley-V C H Verlag GMBH 2021-10 Article PeerReviewed De, Avik and Loo, Tee-How and Solanki, Raja and Sahoo, P. K. (2021) How a conformally flat (GR)4 impacts gauss-bonnet gravity? Fortschritte Der Physik-Progress of Physics, 69 (10). ISSN 0015-8208, DOI https://doi.org/10.1002/prop.202100088 <https://doi.org/10.1002/prop.202100088>. 10.1002/prop.202100088 |
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QA Mathematics De, Avik Loo, Tee-How Solanki, Raja Sahoo, P. K. How a conformally flat (GR)4 impacts gauss-bonnet gravity? |
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First and foremost, we show that a 4-dimensional conformally flat generalized Ricci recurrent spacetime (GR)4 is an Einstein manifold. We examine such a spacetime as a solution of f(R,G)-gravity theory and it is shown that the additional terms from the modification of the gravitational sector can be expressed as a perfect fluid. Several energy conditions are investigated with f(R,G)=R+G and f(R,G)=R2+GlnG. For both the models, weak, null and dominant energy conditions are satisfied while strong energy condition is violated, which is a good agreement with the recent observational studies which reveals that the current universe is in accelerating phase. |
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Article |
author |
De, Avik Loo, Tee-How Solanki, Raja Sahoo, P. K. |
author_facet |
De, Avik Loo, Tee-How Solanki, Raja Sahoo, P. K. |
author_sort |
De, Avik |
title |
How a conformally flat (GR)4 impacts gauss-bonnet gravity? |
title_short |
How a conformally flat (GR)4 impacts gauss-bonnet gravity? |
title_full |
How a conformally flat (GR)4 impacts gauss-bonnet gravity? |
title_fullStr |
How a conformally flat (GR)4 impacts gauss-bonnet gravity? |
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How a conformally flat (GR)4 impacts gauss-bonnet gravity? |
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how a conformally flat (gr)4 impacts gauss-bonnet gravity? |
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Wiley-V C H Verlag GMBH |
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2021 |
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http://eprints.um.edu.my/26464/ |
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1735409416290697216 |