Application of Time Transfer Function to McVittie Spacetime: Gravitational Time Delay and Secular Increase in Astronomical Unit
arXiv:1103.2569 · doi:10.1007/s10714-011-1170-1
Abstract
We attempt to calculate the gravitational time delay in a time-dependent gravitational field, especially in McVittie spacetime, which can be considered as the spacetime around a gravitating body such as the Sun, embedded in the FLRW (Friedmann-Lemaître-Robertson-Walker) cosmological background metric. To this end, we adopt the time transfer function method proposed by Le Poncin-Lafitte {\it et al.} (Class. Quant. Grav. 21:4463, 2004) and Teyssandier and Le Poncin-Lafitte (Class. Quant. Grav. 25:145020, 2008), which is originally related to Synge's world function and enables to circumvent the integration of the null geodesic equation. We re-examine the global cosmological effect on light propagation in the solar system. The round-trip time of a light ray/signal is given by the functions of not only the spacial coordinates but also the emission time or reception time of light ray/signal, which characterize the time-dependency of solutions. We also apply the obtained results to the secular increase in the astronomical unit, reported by Krasinsky and Brumberg (Celest. Mech. Dyn. Astron. 90:267, 2004), and we show that the leading order terms of the time-dependent component due to cosmological expansion is 9 orders of magnitude smaller than the observed value of , i.e., ~[m/century]. Therefore, it is not possible to explain the secular increase in the astronomical unit in terms of cosmological expansion.
13 pages, 2 figures, accepted for publication in General Relativity and Gravitation
References in corpus (6)
- The Pioneer Anomaly
- General post-Minkowskian expansion of time transfer functions
- ASTROD and ASTROD I -- Overview and Progress
- On the recently determined anomalous perihelion precession of Saturn
- A general relativistic model for the light propagation in the gravitational field of the Solar System: the dynamical case
- Azimuthally Symmetric Theory of Gravitation (I)
Cited by in corpus (9)
- Gravitational Anomalies in the Solar System?
- Spherical inhomogeneous solutions of Einstein and scalar-tensor gravity: a map of the land
- Are quantization rules for horizon areas universal?
- An Empirical Explanation of the Anomalous Increases in the Astronomical Unit and the Lunar Eccentricity
- Local cosmological effects of the order of H in the orbital motion of a binary system
- Anomalous Post-Newtonian terms and the secular increase of the Astronomical Unit
- Influence of cosmological expansion in local experiments
- Generalized McVittie geometry in Horndeski gravity with matter
- Simultaneous baldness and cosmic baldness and Kottler spacetime