Classical tests of general relativity in brane world models
Классические тесты общей теории относительности в моделях бран
2010-07-30
SCID: 54.1/kar5hf5q
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Solar System constraintsbrane world modelsclassical tests of general relativitylight deflectionperihelion precessionradar echo delayspherically symmetric static vacuum solutions
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Abstract (AI)
The classical tests of general relativity (perihelion precession, deflection of light and the radar echo delay) are considered for several spherically symmetric static vacuum solutions in brane world models. Generally, the spherically symmetric vacuum solutions of the brane gravitational field equations have properties quite distinct as compared to the standard black hole solutions of general relativity. As a first step a general formalism that facilitates the analysis of general relativistic Solar System tests for any given spherically symmetric metric is developed. It is shown that 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 parameters of the specific models.
Key Findings
1
Applied perihelion precession, light deflection, and radar echo delay tests to several spherically symmetric static vacuum brane-world solutions.
2
Developed a general formalism to analyze Solar System classical tests for any spherically symmetric metric in brane world models.
3
Showed that spherically symmetric vacuum solutions in brane gravity have properties distinct from standard GR black hole solutions.
4
Used Mercury perihelion shift, solar light bending (long-baseline radio interferometry), and Viking Mars ranging to constrain numerical parameters of specific brane-world models.
Research Object
Spherically symmetric static vacuum solutions in brane world models (spacetime metrics)
Research Subject
Predictions for classical general relativity tests — perihelion precession, light deflection, and radar echo delay — and constraints on model parameters from Solar System observations
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2010-07-30
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