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Radioscience simulations in General Relativity and in alternative theories of gravity

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arxiv 1201.5041 v3 pith:7A27IMEO submitted 2012-01-24 gr-qc astro-ph.IMphysics.space-ph

Radioscience simulations in General Relativity and in alternative theories of gravity

classification gr-qc astro-ph.IMphysics.space-ph
keywords alternativegeneralgravityrelativityradiosciencesignalssimulationstheories
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this paper, we focus on the possibility to test General Relativity in the Solar System with radioscience measurements. To this aim, we present a new software that simulates Range and Doppler signals directly from the space-time metric. This flexible approach allows one to perform simulations in General Relativity and in alternative metric theories of gravity. In a second step, a least-squares fit of the different initial conditions involved in the situation is performed in order to compare anomalous signals produced by a given alternative theory with the ones obtained in General Relativity. This software provides orders of magnitude and signatures stemming from hypothetical alternative theories of gravity on radioscience signals. As an application, we present some simulations done for the Cassini mission in Post-Einsteinian Gravity and in the context of MOND External Field Effect. We deduce constraints on the Post-Einsteinian parameters but find that the considered arc of the Cassini mission is not useful to constrain the MOND External Field Effect.

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  1. Improved constraints on modified Newtonian gravity from Cassini radio tracking data

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    An updated Cassini/DE440 fit gives a 40% tighter Solar System quadrupole constraint, producing 3–15 sigma tensions with galaxy rotation curves and a <=2% Milky Way MOND boost.