Impact of a Pioneer/Rindler-type acceleration on the Oort cloud
arXiv:1108.0409 · doi:10.1111/j.1365-2966.2011.19874.x
Abstract
According to a recent modified model of gravity at large distances, a radial constant and uniform extra-acceleration A_Rin of Rindler type acts upon a test particle p in the static field of a central mass M if certain conditions are satisfied. Among other things, it was proposed as a potentially viable explanation of a part of the Pioneer anomaly. We study the impact that an anomalous Rindler-type term as large as |A_Rin| \sim 10^-10 m s^-2 may have on the the orbital dynamics of a typical object of the Oort cloud whose self-energy is quite smaller than its putative Rindler energy. By taking a typical comet moving along a highly eccentric and inclined orbit throughout the expected entire extension of the Oort cloud (0.02 pc-1 pc), it turns out that the addition of an outward Rindler-like acceleration, i.e. for A_Rin > 0, does not allow bound orbits. Instead, if A_Rin < 0, the resulting numerically integrated trajectory is limited in space, but it radically differs from the standard Keplerian ellipse. In particular, the heliocentric distance of the comet gets markedly reduced and experiences high frequency oscillations, its speed is increased, and the overall pattern of the trajectory is quite isotropic. As a consequence, the standard picture of the Oort cloud is radically altered since its modified orbits are much less sensitive to the disturbing actions of the Galactic tide and nearby passing stars whose effects, in the standard scenario, are responsible for the phenomenology on which our confidence in the existence of the cloud itself is based. The present analysis may be supplemented in future by further statistical Monte Carlo-type investigations by randomly varying the initial conditions of the comets.
LaTex2e, 17 pages, 5 figures, 2 tables. Better treatment of the Galactic tide. References added. Accepted by Monthly Notices of the Royal Astronomical Society (MNRAS)
References in corpus (6)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- Model for gravity at large distances
- Injection of Oort Cloud Comets: The Fundamental Role of Stellar Perturbations
- Solar system constraints on Rindler acceleration
- Impact cratering and the Oort cloud
- Searching for Stars Closely Encountering with the Solar System
Cited by in corpus (15)
- Gravitational Anomalies in the Solar System?
- Evading Derrick's theorem in curved space: Static metastable spherical domain wall
- The Flyby Anomaly and the Effect of a Topological Torsion Current
- Testing modified gravity at large distances with the HI Nearby Galaxy Survey's rotation curves
- Modified Rindler acceleration as a nonlinear electromagnetic effect
- Existence and Stability of Static Spherical Fluid Shells in a Schwarzschild-Rindler-anti-de Sitter Metric
- Effect of TTC on Satellite Orbital Mechanics
- Two-body orbit expansion due to time-dependent relative acceleration rate of the cosmological scale factor
- Re-Examination of Globally Flat Space-Time
- Motion of Particles in Solar and Galactic Systems by Using Neumann Boundary Condition
- On a correlation among azimuthal velocities and the flyby anomaly sign
- Pioneer 10 and 11 Spacecraft Anomalous Acceleration in the light of the Nonsymmetric Kaluza-Klein (Jordan-Thiry) Theory
- Constraining A String Gauge Field by Galaxy Rotation Curves and Perihelion Precession of Planets
- On the possible onset of the Pioneer anomaly
- A scan of f(R) models admitting Rindler type acceleration