Topological Defects in the Cosmos and Lab
arXiv:hep-ph/9802311 · doi:10.1080/001075198181928
Abstract
Current theories of particle physics lead to the unavoidable conclusion that there must have been several phase transitions in the early universe. Further, in the context of these theories, it is possible that cosmological phase transitions would have produced topological defects that may be roaming our heavens today. A finding of these fossils from the early universe would provide a direct confirmation of the thermal history of the cosmos, insight into astrophysical phenomena, and, vital information about particle physics. The elimination of unobserved topological defects provides important constraints on particle physics and may also suggest novel cosmology. I describe some of the research on cosmic topological defects and recent efforts to address cosmological issues in condensed matter systems. (Invited article for publication in Contemporary Physics.)
13 pages, 9 figures; a reference corrected and a sentence clarified
Cited by in corpus (5)
- Ultra-High Energy Cosmic Rays: A Probe of Physics and Astrophysics at Extreme Energies
- On the Burgers vector of a wave dislocation
- Cosmic Topological Defects, Highest Energy Cosmic Rays, and the Baryon Asymmetry of the Universe
- Kink-antikink scattering in a quantum vacuum
- Resonance structures in kink-antikink scattering in a quantum vacuum