Probing Dark Energy through Scale Dependence
arXiv:1305.0008 · doi:10.1103/PhysRevD.88.124035
Abstract
We consider the consequences of having no prior knowledge of the true dark energy model for the interpretation of cosmological observations. The magnitude of redshift-space distortions and weak-lensing shear is determined by the metric on the geodesics of which galaxies and light propagate. We show that, given precise enough observations, we can use these data to completely reconstruct the metric on our past lightcone and therefore to measure the scale- and time-dependence of the anisotropic stress and the evolution of the gravitational potentials in a model-independent manner. Since both dark matter and dark energy affect the visible sector only through the gravitational field they produce, they are inseparable without a model for dark energy: galaxy bias cannot be measured and therefore the distribution of dark matter determined; the peculiar velocity of dark matter can be identified with that of the galaxies only when the equivalence principle holds. Given these limitations, we show how one can nonetheless build tests for classes of dark energy models which depend on making measurements at multiple scales at a particular redshift. They are null tests on the model-independent observables, do not require modeling evolution in time and do not require any parametrization of the free functions of these models, such as the sound speed. We show how one can rule out or constrain the whole class of the most-general scalar-tensor theories even without assuming the quasi-static limit.
11 pages; v2 reflect version accepted for publication in PRD. Minor additions discussing the feasibility of proposed tests and describing effect of more than one degree of freedom for dark energy
References in corpus (17)
- Models of f(R) Cosmic Acceleration that Evade Solar-System Tests
- Imperfect Dark Energy from Kinetic Gravity Braiding
- A Parameterized Post-Friedmann Framework for Modified Gravity
- Measuring the dark side (with weak lensing)
- A discriminating probe of gravity at cosmological scales
- Measuring primordial non-gaussianity without cosmic variance
- New Perspective on Galaxy Clustering as a Cosmological Probe: General Relativistic Effects
- Current constraints on the cosmic growth history
- On the Growth of Perturbations as a Test of Dark Energy
- The Parameterized Post-Friedmann Framework for Theories of Modified Gravity: Concepts, Formalism and Examples
- How to optimally parametrize deviations from General Relativity in the evolution of cosmological perturbations
- Observables and unobservables in dark energy cosmologies
- Crossing the Phantom Divide
- The phenomenological approach to modeling the dark energy
- A sub-horizon framework for probing the relationship between the cosmological matter distribution and metric perturbations
- Consistent perturbations in an imperfect fluid
- Anisotropic stress and stability in modified gravity models
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- Maximal freedom at minimum cost: linear large-scale structure in general modifications of gravity
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- Effective Field Theory of Cosmic Acceleration: an implementation in CAMB
- Effective Field Theory of Cosmic Acceleration: constraining dark energy with CMB data
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- The fate of large-scale structure in modified gravity after GW170817 and GRB170817A
- Constraints on deviations from CDM within Horndeski gravity
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- Tension of the statistic and RSD data with Planck/CDM and implications for weakening gravity
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- Model-independent reconstruction of the linear anisotropic stress
- Shaken, not stirred: kinetic mixing in scalar-tensor theories of gravity
- Signatures of Horndeski gravity on the Dark Matter Bispectrum
- New Gravitational Scales in Cosmological Surveys
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- Probing non-standard gravity with the growth index: a background independent analysis
- Non-standard gravitational waves imply gravitational slip: on the difficulty of partially hiding new gravitational degrees of freedom
- Classifying Linearly Shielded Modified Gravity Models in Effective Field Theory
- Cosmological tests of modified gravity: constraints on theories from the galaxy clustering ratio
- Observable physical modes of modified gravity
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- Future constraints on the gravitational slip with the mass profiles of galaxy clusters
- Modified Einstein versus Modified Euler for Dark Matter
- Seeding supermassive black holes with a non-vortical dark-matter subcomponent
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- Dynamical aspects for scalar fields coupled to cubic contractions of the Riemann tensor
- Combining gravitational lensing and gravitational redshift to measure the anisotropic stress with future galaxy surveys
- Testing gravity with gravitational wave friction and gravitational slip
- Measuring the distortion of time with relativistic effects in large-scale structure
- Constraining dark sector perturbations I: cosmic shear and CMB lensing
- Inflaton decay and reheating in nonminimal derivative coupling
- Constraining dark sector perturbations II: ISW and CMB lensing tomography
- Weak gravity on a CDM background
- Disentangling modified gravity from a dark force with gravitational redshift
- Interacting parametrized post-Friedmann method
- Gravitational Slip parameter and Gravitational Waves in Einstein-Cartan theory
- Effects of Dark Energy anisotropic stress on the matter power spectrum