Cosmic string loops in the expanding universe
arXiv:astro-ph/0610419 · doi:10.1103/PhysRevD.75.063521
Abstract
We study the production of loops in the cosmic string network in the expanding background by means of a numerical simulation exact in the flat-spacetime limit and first-order in the expansion rate. We find an initial regime characterized by production of small loops at the scale of the initial correlation length, but later we see the emergence of a scaling regime of loop production. This qualitatively agrees with earlier expectations derived from the results of flat-spacetime simulations. In the final scaling regime we find that the characteristic length of loops scales as in both radiation and matter eras.
9 pages, 5 figures, RevTeX; v2: expansion and clarification, improved figures; v3: reference updated, typos fixed
Cited by in corpus (20)
- Small-Angle CMB Temperature Anisotropies Induced by Cosmic Strings
- Cosmic String Structure at the Gravitational Radiation Scale
- Cosmic String Loops, Large and Small
- Evolution of cosmic superstring networks: a numerical simulation
- Cosmic Strings and Cosmic Superstrings
- First LIGO search for gravitational wave bursts from cosmic (super)strings
- Cosmic Strings from Supersymmetric Flat Directions
- Scaling solution for small cosmic string loops
- Cosmic Necklaces from String Theory
- Non-Thermal Dark Matter from Cosmic Strings
- Cosmic string loops: large and small, but not tiny
- Semiclassical decay of topological defects
- Production of Topological Defects at the End of Inflation
- Magnetogenesis from Cosmic String Loops
- Energy Radiation by Cosmic Superstrings in Brane Inflation
- Gravitational Wave Bursts from Cosmic Superstring Reconnections
- Periodic Gravitational Waves From Small Cosmic String Loops
- Clustering of Superstring Loops
- Small Scale Behavior of Cosmic String Networks
- Analytic Approaches to the Study of Small Scale Structure on Cosmic String Networks