Current-carrying string loops in black-hole spacetimes with a repulsive cosmological constant
arXiv:1103.4005 · doi:10.1103/PhysRevD.82.125012
Abstract
Current-carrying string loop dynamics in Schwarzschild-de Sitter spacetimes characterized by the cosmological parameter λ=1/3ΛM^2 is investigated. With attention concentrated to the axisymmetric motion of string loops it is shown that the resulting motion is governed by the presence of an outer tension barrier and an inner angular momentum barrier that are influenced by the black hole gravitational field given by the mass M and the cosmic repulsion given by the cosmological constant Λ. The gravitational attraction could cause capturing of the string having low energy by the black hole or trapping in its vicinity; with high enough energy, the string can escape (scatter) to infinity. The role of the cosmic repulsion becomes important in vicinity of the so-called static radius where the gravitational attraction is balanced by the cosmic repulsion-it is demonstrated both in terms of the effective potential of the string motion and the basin boundary method reflecting its chaotic character, that a potential barrier exists along the static radius behind which no trapped oscillations may exist. The trapped states of the string loops, governed by the interplay of the gravitating mass M and the cosmic repulsion, are allowed only in Schwarzschild-de Sitter spacetimes with the cosmological parameter λ<λ_trap 0.00497. The trapped oscillations can extend close to the radius of photon circular orbit, down to r_mt 3.3M.
21 pages, 22 figures
References in corpus (19)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Solar system effects in Schwarzschild--de Sitter spacetime
- Influence of the relict cosmological constant on accretion discs
- Equatorial circular orbits in the Kerr-de Sitter spacetimes
- On the influence of the cosmological constant on gravitational lensing in small systems
- Dark energy, inflation and dark matter from modified F(R) gravity
- Periapsis and gravitomagnetic precessions of stellar orbits in Kerr and Kerr-de Sitter black hole spacetimes
- Equatorial photon motion in the Kerr-Newman spacetimes with a non-zero cosmological constant
- The role of Lambda in the cosmological lens equation
- Eleven spherically symmetric constant density solutions with cosmological constant
- Pseudo-Newtonian gravitational potential for Schwarzschild-de Sitter spacetimes
- Cosmological constant and time delay
- Equilibrium conditions of spinning test particles in Kerr-de Sitter spacetimes
- Constraining the cosmological constant and the DGP gravity with the double pulsar PSR J0737-3039
- Spherically Symmetric Static Configurations of Uniform Density in Spacetimes with a Non-Zero Cosmological Constant
- Extreme gravitational lensing in vicinity of Schwarzschild-de Sitter black holes
- Non-monotonic orbital velocity profiles around rapidly rotating Kerr-(anti-)de Sitter black holes
- Measurement of Mass and Spin of Black Holes with QPOs
- Masses of Black Holes in the Universe