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Classification of teleparallel Horndeski cosmology via Noether symmetries

Konstantinos F. DialektopoulosCenter for Gravitation and Cosmology, College of Physical Science and Technology, Yangzhou University, Yangzhou, 225009, ChinaJackson Levi SaidDepartment of Physics, University of Malta, Msida, MaltaZinovia OikonomopoulouInstitute of Space Sciences and Astronomy, University of Malta, Msida, MSD 2080, Malta
2022en
ABI

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Abstract Teleparallel Horndeski theory offers an avenue through which to circumvent the speed constraint of gravitational waves in an efficient manner. However, this provides an even larger plethora of models due to the increase in action terms. In this work we explore these models in the context of cosmological systems. Using Noether point symmetries, we classify the dynamical systems that emerge from teleparallel Horndeski cosmologies. This approach is very effective at selecting specific models in the general class of second-order teleparallel scalar–tensor theories, as well as for deriving exact solutions within a cosmological context. By iterating through the Lagrangians selected through the Noether symmetries, we solve for a number of cosmological systems which provides new cosmological systems to be studied.

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