The CMB lensing bi-spectrum as a probe of modified gravity theories
arXiv:1805.10567 · doi:10.1103/PhysRevD.98.043530
Abstract
Cosmological structures grow differently in theories of gravity which are modified as compared to Einstein's General relativity (GR). Cosmic microwave background (CMB) fluctuation patterns at the last scattering surface are lensed by these structures along the photon path to the observer. The observed CMB pattern therefore keeps trace of the growth history of structures. We show that observations of the CMB lensing bi-spectrum offer an interesting way to constrain deviations from GR in a broad class of scalar-tensor theories of gravity called "beyond Horndeski". We quantify how the constraints on generic parameters describing the deviations from GR depend on the effective multipole range of the analysis. Our results further indicate that an accurate nonlinear correction of the matter bi-spectrum in the modified gravity considered is necessary when the bi-spectrum is used to probe scales beyond a multipole . We also found that the results are insensitive to details of the implementation of the screening mechanism, at very small scales. We finally demonstrate the potential of the lensing bi-spectrum to provide a blind reconstruction of the redshift evolution of our modified gravity parameters by combining the analysis of CMB and low-z source lensing data.
12 pages, 6 figures
References in corpus (10)
- Healthy theories beyond Horndeski
- Exploring gravitational theories beyond Horndeski
- CMB temperature lensing power reconstruction
- Effects of modified gravity on B-mode polarization
- A combined analysis of 3D Weak Lensing, Lyman-alpha forest and WMAP year three data
- Weakening Gravity on Redshift-Survey Scales with Kinetic Matter Mixing
- Constraining modified theory of gravity with galaxy bispectrum
- Matter bispectrum beyond Horndeski
- Probing Modified Gravity Theories with ISW and CMB Lensing
- Weak lensing probe of cubic Galileon model
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- Cosmic Time Slip: Testing Gravity on Supergalactic Scales with Strong-Lensing Time Delays
- Impact of nonlinear growth of the large-scale structure on CMB B-mode delensing
- Second-order peculiar velocity field as a novel probe of scalar-tensor theories
- Higher-Order Spectra of Weak Lensing Convergence Maps in Parameterized Theories of Modified Gravity
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- Probing gravity beyond general relativity with bispectrum multipoles of cosmological tracers: I. Theoretical Foundations