Exact relativistic treatment of stationary counter-rotating dust disks I: Boundary value problems and solutions
arXiv:gr-qc/0102083 · doi:10.1103/PhysRevD.63.064033
Abstract
This is the first in a series of papers on the construction of explicit solutions to the stationary axisymmetric Einstein equations which describe counter-rotating disks of dust. These disks can serve as models for certain galaxies and accretion disks in astrophysics. We review the Newtonian theory for disks using Riemann-Hilbert methods which can be extended to some extent to the relativistic case where they lead to modular functions on Riemann surfaces. In the case of compact surfaces these are Korotkin's finite gap solutions which we will discuss in this paper. On the axis we establish for general genus relations between the metric functions and hence the multipoles which are enforced by the underlying hyperelliptic Riemann surface. Generalizing these results to the whole spacetime we are able in principle to study the classes of boundary value problems which can be solved on a given Riemann surface. We investigate the cases of genus 1 and 2 of the Riemann surface in detail and construct the explicit solution for a family of disks with constant angular velocity and constant relative energy density which was announced in a previous Physical Review Letter.
32 pages, 1 figure, to appear in Phys. Rev. D
References in corpus (7)
- General relativistic gravitational field of a rigidly rotating disk of dust: Solution in terms of ultraelliptic functions
- Galaxy Collisions
- Exact Relativistic Gravitational Field of a Stationary Counterrotating Dust Disk
- Asymptotically flat solutions to the Ernst equation with reflection symmetry
- The Wahlquist metric cannot describe an isolated rotating body
- Solutions of Einstein's field equations related to Jacobi's inversion problem
- Differentially rotating disks of dust
Cited by in corpus (17)
- Relativistic Models of Galaxies
- Relativistic Static Thin Disks: The Counter-Rotating Model
- Exact relativistic treatment of stationary counter-rotating dust disks III. Physical Properties
- Exact General Relativistic Thick Disks
- Electrovacuum Static Counterrotating Relativistic Dust Disks
- Electrovacuum Static Counter-Rotating Relativistic Dust Disks
- Harrison transformation of hyperelliptic solutions and charged dust disks
- New Models of General Relativistic Static Thick Disks
- Stability of general relativistic static thick disks: the isotropic Schwarzschild thick disk
- General magnetized Weyl solutions: Disks and motion of charged particles
- An approximate global solution of Einstein's equation for a rotating compact source with linear equation of state
- A General Relativistic Model for the Gravitational Field of Active Galactic Nuclei Surrounded by a Disk
- Stability of general relativistic Miyamoto-Nagai galaxies
- Rotating relativistic thin disks as sources of charged and magnetized Kerr-NUT spacetimes
- Exact relativistic treatment of stationary counter-rotating dust disks II: Axis, Disk and Limiting Cases
- Slowly rotating perfect fluids with a cosmological constant
- An approximate global solution of Einstein's equations for differentially rotating compact body