Scaling in a SU(2)/Z3 model of cosmic superstring networks
Mark Hindmarsh, P. M. Saffin
Abstract
Motivated by recent developments in superstring theory in the cosmological context, we examine a field theory which contains string networks with 3-way junctions. We perform numerical simulations of this model, identify the length scales of the network that forms, and provide evidence that the length scales tend towards a scaling regime, growing in proportion to time. We infer that the presence of junctions does not in itself cause a superstring network to dominate the energy density of the early Universe.
Create a lesson
Related papers
Topologically induced deformations of differential forms
J. M. Hoff da Silva, J. M. B. Matzenbacher, R. da Rocha
Accretion, mergers, and metastability of fuzzy spheres in a three-matrix model
M. Hrmo, S. Kováčik, K. Magdolenová et al.
Anomaly Matching between Topological Superconductors and N=8 Supergravity
Christopher W. Murphy
Higher anomalies, compressing SPTs and cohomology operations
Shani Nadir Meynet, Elias Riedel Gårding
Exploring thermal order in conformal theories with multiple scalars coupled to an O(N) vector field
Soumyadeep Chaudhuri, Bilal Hawashin, Eliezer Rabinovici et al.
Subleading Collinear Limits of Yang-Mills Amplitudes from Gravity
Jin Dong, Stephan Stieberger