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We consider the Quartic Horndeski theory with torsion on a FLRW background in the second order formalism.
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M. Libanov, S. Mironov, and V. Rubakov, “Generalized Galileons: instabilities of bouncing and Genesis cosmologies and modified Genesis,” JCAP , vol. 08, p. 037, 2016
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T. Kobayashi, “Generic instabilities of nonsingular cosmologies in Horndeski theory: A no-go theorem,” Phys. Rev. D , vol. 94, no. 4, p. 043511, 2016
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E. Davydov, “Comparing metric and palatini approaches to vector horndeski theory,” International Journal of Modern Physics D , vol. 27, no. 04, p. 1850038, 2018
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A. Golovnev and T. Koivisto, “Cosmological perturbations in modified teleparallel gravity models,” JCAP , vol. 11, p. 012, 2018
J. Beltrán Jiménez and K. F. Dialektopoulos, “Non-Linear Obstructions for Consistent New General Relativity,” JCAP , vol. 01, p. 018, 2020
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J. Beltrán Jiménez, L. Heisenberg, T. S. Koivisto, and S. Pekar, “Cosmology in f ( Q ) f(Q) geometry,” Phys. Rev. D , vol. 101, no. 10, p. 103507, 2020
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S. Mironov, V. Rubakov, and V. Volkova, “Superluminality in DHOST theory with extra scalar,” JHEP , vol. 04, p. 035, 2021
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M. Kubota, K.-y. Oda, K. Shimada, and M. Yamaguchi, “Cosmological perturbations in palatini formalism,” Journal of Cosmology and Astroparticle Physics , vol. 2021, no. 03, p. 006, 2021
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2018
Cited alongside, same era.
V. E. Volkova, S. A. Mironov, and V. A. Rubakov, “Cosmological Scenarios with Bounce and Genesis in Horndeski Theory and Beyond,” J. Exp. Theor. Phys. , vol. 129, no. 4, pp. 553–565, 2019
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Cited alongside, same era.
T. Kobayashi, “Horndeski theory and beyond: a review,” Reports on Progress in Physics , vol. 82, no. 8, p. 086901, 2019
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Cited alongside, same era.
S. Bahamonde, K. F. Dialektopoulos, and J. L. Said, “Can horndeski theory be recast using teleparallel gravity?” Physical Review D , vol. 100, no. 6, p. 064018, 2019
2019
Cited alongside, same era.
S. Mironov, V. Rubakov, and V. Volkova, “Subluminal cosmological bounce beyond Horndeski,” JCAP , vol. 05, p. 024, 2020
2020
Cited alongside, same era.
S. Mironov, V. Rubakov, and V. Volkova, “Superluminality in beyond Horndeski theory with extra scalar field,” Phys. Scripta , vol. 95, no. 8, p. 084002, 2020
2020
Cited alongside, same era.
T. Helpin and M. S. Volkov, “Varying the horndeski lagrangian within the palatini approach,” Journal of Cosmology and Astroparticle Physics , vol. 2020, no. 01, p. 044, 2020
2020
Cited alongside, same era.
T. Helpin and M. S. Volkov, “A metric-affine version of the horndeski theory,” International Journal of Modern Physics A , vol. 35, no. 02n03, p. 2040010, 2020
2020
Cited alongside, same era.
2021
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R. C. Bernardo, J. L. Said, M. Caruana, and S. Appleby, “Well-tempered teleparallel horndeski cosmology: a teleparallel variation to the cosmological constant problem,” Journal of Cosmology and Astroparticle Physics , vol. 2021, no. 10, p. 078, 2021
2021
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A. Golovnev and M.-J. Guzman, “Nontrivial Minkowski backgrounds in f ( T ) f(T) gravity,” Phys. Rev. D , vol. 103, no. 4, p. 044009, 2021
2021
Later among the works it cites.
S. Mironov and A. Shtennikova, “Stable cosmological solutions in Horndeski theory,” 12 2022
2022
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2022
Later among the works it cites.
2022
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Y.-Q. Dong and Y.-X. Liu, “Polarization modes of gravitational waves in palatini-horndeski theory,” Physical Review D , vol. 105, no. 6, p. 064035, 2022
2022
Later among the works it cites.
K. F. Dialektopoulos, J. L. Said, and Z. Oikonomopoulou, “Classification of teleparallel horndeski cosmology via noether symmetries,” The European Physical Journal C , vol. 82, no. 3, pp. 1–15, 2022
2022
Later among the works it cites.