TY - JOUR
T1 - KiDS-Legacy
T2 - Constraints on Horndeski gravity from weak lensing combined with galaxy clustering and cosmic microwave background anisotropies
AU - Stölzner, Benjamin
AU - Reischke, Robert
AU - Grasso, Matteo
AU - Cataneo, Matteo
AU - Joachimi, Benjamin
AU - Loureiro, Arthur
AU - Spurio Mancini, Alessio
AU - Wright, Angus H.
AU - Asgari, Marika
AU - Bilicki, Maciej
AU - Dvornik, Andrej
AU - Georgiou, Christos
AU - Giblin, Benjamin
AU - Heymans, Catherine
AU - Hildebrandt, Hendrik
AU - Joudaki, Shahab
AU - Kuijken, Konrad
AU - Li, Shun Sheng
AU - Linke, Laila
AU - Mahony, Constance
AU - Moscardini, Lauro
AU - Porth, Lucas
AU - Radovich, Mario
AU - Tröster, Tilman
AU - Von Wietersheim-Kramsta, Maximilian
AU - Yan, Ziang
AU - Yoon, Mijin
AU - Zhang, Yun Hao
N1 - Publisher Copyright:
© The Authors 2026.
PY - 2026/3/1
Y1 - 2026/3/1
N2 - We present constraints on modified gravity from a cosmic shear analysis of the final data release of the Kilo-Degree Survey (KiDS-Legacy) in combination with DESI measurements of baryon acoustic oscillations, eBOSS observations of redshift space distortions, and cosmic microwave background (CMB) anisotropies from Planck. We studied the Horndeski class of modified gravity models in an effective field theory framework, employing a parametrisation that satisfies stability conditions by construction. In this work, for the first time, we present a cosmological analysis in this inherently stable parameter basis. Cosmic shear constrains the Horndeski parameter space significantly, matching or surpassing the CMB contribution. Adopting the de-mixed kinetic term of the scalar field perturbation, Dkin, and the deviation of the Planck mass from its fiducial value, δM2 * ? M2 * ? 1, as model parameters, we constrained their present values as δM 2 * = 0.32+0.07 ?0.21 and D kin = 3.74+0.69 ?1.92, representing a deviation from general relativity (GR) at 1.5ς and 1.9ς, respectively. We derived constraints on the structure growth parameter, S 8 = 0.813+0.008 ?0.011, which is compatible with the λ CDM constraint at 0.54ς. We obtained the deviation of the effective Newtonian coupling from the GR value as δμ∞,eff = 0.066 ± 0.023, corresponding to a 2.9ς significance. Although modified gravity provides a slightly better fit to the data, a model comparison only reveals a weak preference for modified gravity at the 1.4ς level. When adopting a dynamical dark energy model of the background cosmology, the inferred modified gravity parameter constraints are stable with respect to a the λ cold dark matter (λ CDM) cosmological background, while a mild preference at 1.57ς for dynamical dark energy remains.
AB - We present constraints on modified gravity from a cosmic shear analysis of the final data release of the Kilo-Degree Survey (KiDS-Legacy) in combination with DESI measurements of baryon acoustic oscillations, eBOSS observations of redshift space distortions, and cosmic microwave background (CMB) anisotropies from Planck. We studied the Horndeski class of modified gravity models in an effective field theory framework, employing a parametrisation that satisfies stability conditions by construction. In this work, for the first time, we present a cosmological analysis in this inherently stable parameter basis. Cosmic shear constrains the Horndeski parameter space significantly, matching or surpassing the CMB contribution. Adopting the de-mixed kinetic term of the scalar field perturbation, Dkin, and the deviation of the Planck mass from its fiducial value, δM2 * ? M2 * ? 1, as model parameters, we constrained their present values as δM 2 * = 0.32+0.07 ?0.21 and D kin = 3.74+0.69 ?1.92, representing a deviation from general relativity (GR) at 1.5ς and 1.9ς, respectively. We derived constraints on the structure growth parameter, S 8 = 0.813+0.008 ?0.011, which is compatible with the λ CDM constraint at 0.54ς. We obtained the deviation of the effective Newtonian coupling from the GR value as δμ∞,eff = 0.066 ± 0.023, corresponding to a 2.9ς significance. Although modified gravity provides a slightly better fit to the data, a model comparison only reveals a weak preference for modified gravity at the 1.4ς level. When adopting a dynamical dark energy model of the background cosmology, the inferred modified gravity parameter constraints are stable with respect to a the λ cold dark matter (λ CDM) cosmological background, while a mild preference at 1.57ς for dynamical dark energy remains.
KW - Cosmological parameters
KW - Cosmology: observations
KW - Gravitation
KW - Gravitational lensing: weak
KW - Large-scale structure of Universe
KW - Methods: statistical
UR - https://www.scopus.com/pages/publications/105033220255
U2 - 10.1051/0004-6361/202558536
DO - 10.1051/0004-6361/202558536
M3 - Article
AN - SCOPUS:105033220255
SN - 0004-6361
VL - 707
JO - Astronomy and Astrophysics
JF - Astronomy and Astrophysics
M1 - A323
ER -