Exact geodesic distances in FLRW spacetimes

Geodesics are used in a wide array of applications in cosmology and astrophysics. However, it is not a trivial task to efficiently calculate exact geodesic distances in an arbitrary spacetime. We show that in spatially flat (3+1)-dimensional Friedmann-Lemaître-Robertson-Walker (FLRW) spacetimes, it...

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Veröffentlicht in:Physical review. D 2017-11, Vol.96 (10), Article 103538
Hauptverfasser: Cunningham, William J., Rideout, David, Halverson, James, Krioukov, Dmitri
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Sprache:eng
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Zusammenfassung:Geodesics are used in a wide array of applications in cosmology and astrophysics. However, it is not a trivial task to efficiently calculate exact geodesic distances in an arbitrary spacetime. We show that in spatially flat (3+1)-dimensional Friedmann-Lemaître-Robertson-Walker (FLRW) spacetimes, it is possible to integrate the second-order geodesic differential equations, and derive a general method for finding both timelike and spacelike distances given initial-value or boundary-value constraints. In flat spacetimes with either dark energy or matter, whether dust, radiation, or a stiff fluid, we find an exact closed-form solution for geodesic distances. In spacetimes with a mixture of dark energy and matter, including spacetimes used to model our physical universe, there exists no closed-form solution, but we provide a fast numerical method to compute geodesics. A general method is also described for determining the geodesic connectedness of an FLRW manifold, provided only its scale factor.
ISSN:2470-0010
2470-0029
DOI:10.1103/PhysRevD.96.103538