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Positivity in the Sky: Constraining dark energy and modified gravity from the UV

S. Melville and J. Noller
Phys. Rev. D 101, 021502(R) – Published 22 January 2020; Erratum Phys. Rev. D 102, 049902 (2020)
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Abstract

Positivity bounds—the consequences of requiring a unitary, causal, local UV completion—place strong restrictions on theories of dark energy and/or modified gravity. We derive and investigate such bounds for Horndeski scalar-tensor theories and for the first time pair these bounds with a cosmological parameter estimation analysis, using CMB, redshift space distortion, matter power spectrum, and baryon acoustic oscillation measurements from the Planck, SDSS/BOSS, and 6dF surveys. Using positivity bounds as theoretical priors, we show that their inclusion in the parameter estimation significantly improves the constraints on dark energy/modified gravity parameters. Considering as an example a specific class of models, which are particularly well-suited to illustrate the constraining power of positivity bounds, we find that these bounds eliminate over 60% of the previously allowed parameter space. We also discuss how combining positivity requirements with additional theoretical priors has the potential to further tighten these constraints: for instance, also requiring a subluminal speed of gravitational waves eliminates all but 1% of the previously allowed parameter space.

  • Figure
  • Received 29 April 2019
  • Revised 5 August 2019

DOI:https://doi.org/10.1103/PhysRevD.101.021502

© 2020 American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & AstrophysicsParticles & Fields

Erratum

Authors & Affiliations

S. Melville1,2 and J. Noller3,4

  • 1Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Wilberforce Road, Cambridge CB3 0WA, United Kingdom
  • 2Emmanuel College, University of Cambridge, St Andrew’s Street, Cambridge CB2 3AP, United Kingdom
  • 3Institute for Theoretical Studies, ETH Zürich, Clausiusstrasse 47, 8092 Zürich, Switzerland
  • 4Institute for Particle Physics and Astrophysics, ETH Zürich, 8093 Zürich, Switzerland

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Issue

Vol. 101, Iss. 2 — 15 January 2020

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