Solar system tests of brane world models

Тесты в Солнечной системе для моделей бранового мира
Christian G Böhmer, Tiberiu Harko, Francisco S N Lobo
2008-02-05

Dadhich Maartens Papadopoulos Rezania (DMPR) solutionReissner–Nordström-like metricbrane tensionbrane world modelsbulk tidal parameterfifth dimension tidal effectslight deflectionperihelion precessionradar echo delaysolar system tests
The classical tests of general relativity (perihelion precession, deflection of light and the radar echo delay) are considered for the Dadhich, Maartens, Papadopoulos and Rezania (DMPR) solution of the spherically symmetric static vacuum field equations in brane world models. For this solution the metric in the vacuum exterior to a brane world star is similar to the Reissner–Nordström form of classical general relativity, with the role of the charge played by the tidal effects arising from projections of the fifth dimension. The existing observational solar system data on the perihelion shift of Mercury, on the light bending around the Sun (obtained using long-baseline radio interferometry), and ranging to Mars using the Viking lander, constrain the numerical values of the bulk tidal parameter and of the brane tension.
1
Classical solar system tests (Mercury perihelion precession, light deflection, radar echo delay) were applied to the DMPR solution to evaluate its predictions.
2
Observational data on Mercury's perihelion shift, light bending from long-baseline radio interferometry, and Viking Mars ranging place constraints on the bulk tidal parameter of the model.
3
The DMPR brane world vacuum solution yields an exterior metric similar to the Reissner–Nordström metric, where tidal effects from the fifth dimension act like an effective charge.
4
The same solar system observations constrain the numerical value of the brane tension in the DMPR brane world model.

Dadhich–Maartens–Papadopoulos–Rezania (DMPR) spherically symmetric static vacuum brane-world exterior metric (Reissner–Nordström–like spacetime around a brane-world star)

Constraints from classical solar-system tests (Mercury perihelion precession, light deflection by the Sun, and radar echo delay/ranging to Mars) on the bulk tidal parameter and brane tension appearing in the DMPR metric

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2008-02-05
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Christian G Böhmer
Tiberiu Harko
Francisco S N Lobo
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