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Constraining generalized non-local cosmology from Noether symmetries

机译:从Noether对称性约束广义非局部宇宙学

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摘要

We study a generalized non-local theory of gravity which, in specific limits, can become either the curvature non-local or teleparallel non-local theory. Using the Noether symmetry approach, we find that the coupling functions coming from the non-local terms are constrained to be either exponential or linear in form. It is well known that in some non-local theories, a certain kind of exponential non-local couplings is needed in order to achieve a renormalizable theory. In this paper, we explicitly show that this kind of coupling does not need to be introduced by hand, instead, it appears naturally from the symmetries of the Lagrangian in flat Friedmann–Robertson–Walker cosmology. Finally, we find de Sitter and power-law cosmological solutions for different non-local theories. The symmetries for the generalized non-local theory are also found and some cosmological solutions are also achieved using the full theory.
机译:我们研究了一种广义的非局部重力理论,该理论在特定范围内可以成为曲率非局部或远平行非局部理论。使用Noether对称方法,我们发现来自非局部项的耦合函数被约束为指数或线性形式。众所周知,在某些非局部理论中,需要某种指数的非局部耦合才能实现可归一化的理论。在本文中,我们明确表明不需要手工引入这种耦合,而是从平坦的Friedmann-Robertson-Walker宇宙学中的拉格朗日对称性自然出现。最后,我们找到了针对不同非局部理论的de Sitter和幂律宇宙学解决方案。还找到了广义非局部理论的对称性,并使用完整理论获得了一些宇宙学解。

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