Dynamics of Supersymmetric Chameleons
arXiv:1302.3080 · doi:10.1088/1475-7516/2013/10/007
Abstract
We investigate the cosmological dynamics of a class of supersymmetric chameleon models coupled to cold dark matter fermions. Supergravity corrections ensure that these models are efficiently screened in all astrophysical objects of interest, however this does not preclude the enhancement of gravity on linear cosmological scales. We analyse the background cosmology and solve the modified equations for the growth of cold dark matter density perturbations in closed form. Using this, we go on to derive the modified linear power spectrum which is characterised by two scales, the horizon size at matter-radiation equality and at the redshift when the chameleon reaches the minimum of its effective potential. The model includes a cosmological constant in the form of a Fayet-Illiopolous term, which emerges at late times due to the coupling of the chameleon to two charged scalars. We examine the conditions under which this leads to viable background cosmology and go on to analyse the deviations from the LCDM predictions in the linear regime. We find that for reasonable values in the model's parameter space there is generically a region where the model's cosmology is viable and current measurements can be reproduced. A small discrepancy of the matter power spectrum from its LCDM counterpart can be obtained in a smaller subset of the parameter space.
29 pages, five figures, updated to reflect published version. Section five has been heavily updated to include a discussion on deviations in the CDM power spectrum on large scales
References in corpus (19)
- Cosmology and Fundamental Physics with the Euclid Satellite
- Cosmology and fundamental physics with the Euclid satellite
- Evading Equivalence Principle Violations, Cosmological and other Experimental Constraints in Scalar Field Theories with a Strong Coupling to Matter
- Non-linear Evolution of f(R) Cosmologies III: Halo Statistics
- Equivalence Principle Implications of Modified Gravity Models
- No-Go Theorems for Generalized Chameleon Field Theories
- The Vainshtein mechanism in the Decoupling Limit of massive gravity
- The WiggleZ Dark Energy Survey: measuring the cosmic growth rate with the two-point galaxy correlation function
- Towards a UV Completion for Chameleon Scalar Theories
- The SUGRA Quintessence Model Coupled to the MSSM
- Moduli Fields as Quintessence and the Chameleon
- Dark Energy and the MSSM
- SUPER-Screening
- Chameleonic inflation
- Moduli-Induced Vacuum Destabilisation
- Chameleons on the Racetrack
- Lectures on Screened Modified Gravity
- Particles and forces from chameleon dark energy
- Galaxy Rotation Curves as a probe of Chameleon-Screened Scalar Fields
Cited by in corpus (16)
- Beyond the Cosmological Standard Model
- Tests of Chameleon Gravity
- A local resolution of the Hubble tension: The impact of screened fifth forces on the cosmic distance ladder
- A Compendium of Chameleon Constraints
- Constraining chameleon models with cosmology
- The Novel Probes Project -- Tests of Gravity on Astrophysical Scales
- Relativistic scalar fields and the quasi-static approximation in theories of modified gravity
- Stellar Oscillations in Modified Gravity
- Disformal Gravity Theories: A Jordan Frame Analysis
- Neutrino-Assisted Early Dark Energy: Theory and Cosmology
- Pulsar Constraints on Screened Modified Gravity
- SUPER-Screening
- Cosmic Acceleration and Geodesic Deviation in Chameleon Scalar Field Model
- Ultra-local models of modified gravity without kinetic term
- Cosmological Solutions of Chameleon Scalar Field Model
- Supersymmetric chameleons and ultra-local models