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Parameterizing scalar-tensor theories for cosmological probes

Appleby, S.~A. and Weller, J.

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Abstract

We study the evolution of density perturbations for a class of $f(R)$ models which closely mimic $Lambda$CDM background cosmology. Using the quasi-static approximation, and the fact that these models are equivalent to scalar-tensor gravity, we write the modified Friedmann and cosmological perturbation equations in terms of the mass $M$ of the scalar field. Using the perturbation equations, we then derive an analytic expression for the growth parameter $gamma$ in terms of $M$, and use our result to reconstruct the linear matter power spectrum. We find that the power spectrum at $z sim 0$ is characterized by a tilt relative to its General Relativistic form, with increased power on small scales. We discuss how one has to modify the standard, constant $gamma$ prescription in order to study structure formation for this class of models. Since $gamma$ is now scale and time dependent, both the amplitude and transfer function associated with the linear matter power spectrum will be modified. We suggest a simple parameterization for the mass of the scalar field, which allows us to calculate the matter power spectrum for a broad class of $f(R)$ models.

Information

Published
2010 as article
jcap, 12 - page(s): 6-_s16
Contact
Prof. Dr. Jochen Weller
Type
theoretical work
Links
pdf
ads
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Related to the research area(s):
E
e-Print
1008.2693

Technische Universitaet Muenchen
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