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Solar System Constraints on Scalar Tensor Theories with Non-Standard Action

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abstract

We compute the Post-Newtonian parameter (PPN),$\gamma$, for scalar-tensor gravity theory when the action functional for the scalar field is a non-standard one, namely the Dirac-Born-Infeld (DBI) type action, used in the literature for a tachyon field. We investigate two different cases (Linear and conformal couplings) when the scalar field is non-minimally coupled to gravity via the scalar curvature. We find that the PPN parameter $\gamma$, which measures the amount of space curvature per unit rest mass, becomes a function of the effective mass of the scalar field. Using this PPN parameter, we calculate the time delay $\Delta\tau$ for the signal to travel the round trip distance bertween a ground based antenna and a reflector placed in a spacecraft which is produced due to the grvitational field of Sun. We use this $\Delta\tau$ to compare our result with that obtained by the Cassini mission and derive the constraints on the model parameters.

fields

gr-qc 1

years

2024 1

verdicts

CONDITIONAL 1

representative citing papers

Kinetic coupled tachyon: A dynamical system analysis

gr-qc · 2024-12-28 · conditional · novelty 6.0

A kinetically coupled tachyon dark energy model admits a new stable scaling attractor for a range of coupling and potential parameters, providing a mechanism to keep dark energy and dark matter densities comparable.

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  • Kinetic coupled tachyon: A dynamical system analysis gr-qc · 2024-12-28 · conditional · none · ref 56 · internal anchor

    A kinetically coupled tachyon dark energy model admits a new stable scaling attractor for a range of coupling and potential parameters, providing a mechanism to keep dark energy and dark matter densities comparable.