Topological Defects from First Order Gauge Theory Phase Transitions
نویسنده
چکیده
We investigate the mechanism by which topological defects form in first order phase transitions with a charged order parameter. We show how thick superconductor vortices and heavy cosmic strings form by trapping of magnetic flux. In an external magnetic field, intermediate objects such as strips and membranes of magnetic flux and chains of single winding defects are produced. At non-zero temperature, a variety of spontaneous defects of different winding numbers arise. In cosmology, our results mean that the magnetic flux thermal fluctuations get trapped in a primordial multi-tension string network. The mechanism may also apply to the production of cosmic-like strings in brane collisions. In a thin type-I superconductor film, flux strips are found to be meta-stable while thick vortices are stable up to some critical value of the winding number which increases with the thickness of the film. In addition, a non-dissipative Josephson-like current is obtained across the strips of quantized magnetic flux.
منابع مشابه
Formation of topological defects in first order phase transitions.
c) Address after October 1st 1993: School of Mathematical and Physical Sciences, University of Sussex, Brighton BN1 9QH, U.K. We analyze the evolution of scalar and gauge fields during first order phase transitions and show how the Kibble mechanism1) for the formation of topological defects emerges from the underlying dynamics, paying particular attention to problems posed by gauge invariance w...
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