The canonical Monte Carlo algorithm for simulating the production of string-like topological defects at a phase transition is extended by introducing a distribution of domain sizes. A strong correlation is found between the fraction in the form of ‘infinite’ string and the variance of the volume of the regions of constant phase
We perform numerical simulations of cosmic string evolution with intercommuting probability $P$ in t...
This paper will discuss cosmic strings. Two toy models show how cosmic strings are created and a mor...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...
We study the production of topological defects, in particular cosmic strings, during a phase transit...
It was argued, and fought through numerical work that the results of non-dynamical Monte Carlo compu...
In these lectures, I describe the formation of defect distributions in first-order phase transitions...
We have studied the formation, interactions and cosmological implications of topological defects. Th...
We describe a detailed study of string-seeded structure formation using high resolution numerical si...
We review recent simulations of the formation of a particular class of non-topological defects known...
This book sheds new light on topological defects in widely differing systems, using the Velocity-Dep...
We describe a numerical simulation of the evolution of an S 3 cosmic string network which takes full...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...
Abstract. We present the first calculation of the bispectrum of the matter perturbations induced by ...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...
Many extensions to the Standard Model of particle physics feature a first-order phase transition in ...
We perform numerical simulations of cosmic string evolution with intercommuting probability $P$ in t...
This paper will discuss cosmic strings. Two toy models show how cosmic strings are created and a mor...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...
We study the production of topological defects, in particular cosmic strings, during a phase transit...
It was argued, and fought through numerical work that the results of non-dynamical Monte Carlo compu...
In these lectures, I describe the formation of defect distributions in first-order phase transitions...
We have studied the formation, interactions and cosmological implications of topological defects. Th...
We describe a detailed study of string-seeded structure formation using high resolution numerical si...
We review recent simulations of the formation of a particular class of non-topological defects known...
This book sheds new light on topological defects in widely differing systems, using the Velocity-Dep...
We describe a numerical simulation of the evolution of an S 3 cosmic string network which takes full...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...
Abstract. We present the first calculation of the bispectrum of the matter perturbations induced by ...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...
Many extensions to the Standard Model of particle physics feature a first-order phase transition in ...
We perform numerical simulations of cosmic string evolution with intercommuting probability $P$ in t...
This paper will discuss cosmic strings. Two toy models show how cosmic strings are created and a mor...
A system of intercommuting cosmic strings is numerically evolved in a homogeneous radiation-dominate...