Real time rearrangement of particle spectra is studied numerically in a U(1) Gauge+Higgs system, in the unitary gauge and in three spatial dimensions. The cold system starts from the symmetric phase. Evolution of the partial energy densities and pressures reveal well-defined equations of state for the longitudinal and transversal gauge fields very early. Longitudinal modes are excited more efficiently and thermalize the slowest. Hausdorff-dimension of the Higgs-defect manifold, eventually seeding vortex excitations is thoroughly discussed. Scaling dependence of the vortex density on the characteristic time of the symmetry breaking transition is established
Scalar electrodynamics can be used to investigate the formation of cosmic strings in the early unive...
We investigate in detail the transition from the symmetric to the broken phase in scalar electrodyna...
Extensions of the Standard Model (SM) Higgs sectorallow for a rich cosmological history around the e...
Real time excitations in the broken symmetry phase of the classical Abelian Higgs model are investig...
Real time field excitations in the broken symmetry phase of the classical abelian Gauge+Higgs model ...
AbstractWe present a non-perturbative model of Gauge-Higgs Unification. We consider a five-dimension...
In this thesis, we are dedicated to study the time evolution generated by the hamiltonian of a class...
Karsch F, Neuhaus T, PATKOS A. EFFECTIVE SCALAR FIELD-THEORY FOR THE ELECTROWEAK PHASE-TRANSITION. N...
We present the results of a detailed calculation of the excitation spectrum of states with quantum n...
"We compute the complete one-loop finite temperature effective potential for electroweak symmetry br...
We derive a set of gauge independent gap equations for Higgs boson and vector boson masses for the S...
We compute the complete one-loop finite temperature effective potential for elec-troweak symmetry br...
Kajantie K, Laine M, Rummukainen K, Shaposhnikov M. The electroweak phase transition: A non-perturba...
Topological excitations in lattice gauge theories are studied with an aim towards understanding the...
We analyze the Hamiltonian time evolution of classical SU(2) Yang-Mills-Higgs theory with a fundamen...
Scalar electrodynamics can be used to investigate the formation of cosmic strings in the early unive...
We investigate in detail the transition from the symmetric to the broken phase in scalar electrodyna...
Extensions of the Standard Model (SM) Higgs sectorallow for a rich cosmological history around the e...
Real time excitations in the broken symmetry phase of the classical Abelian Higgs model are investig...
Real time field excitations in the broken symmetry phase of the classical abelian Gauge+Higgs model ...
AbstractWe present a non-perturbative model of Gauge-Higgs Unification. We consider a five-dimension...
In this thesis, we are dedicated to study the time evolution generated by the hamiltonian of a class...
Karsch F, Neuhaus T, PATKOS A. EFFECTIVE SCALAR FIELD-THEORY FOR THE ELECTROWEAK PHASE-TRANSITION. N...
We present the results of a detailed calculation of the excitation spectrum of states with quantum n...
"We compute the complete one-loop finite temperature effective potential for electroweak symmetry br...
We derive a set of gauge independent gap equations for Higgs boson and vector boson masses for the S...
We compute the complete one-loop finite temperature effective potential for elec-troweak symmetry br...
Kajantie K, Laine M, Rummukainen K, Shaposhnikov M. The electroweak phase transition: A non-perturba...
Topological excitations in lattice gauge theories are studied with an aim towards understanding the...
We analyze the Hamiltonian time evolution of classical SU(2) Yang-Mills-Higgs theory with a fundamen...
Scalar electrodynamics can be used to investigate the formation of cosmic strings in the early unive...
We investigate in detail the transition from the symmetric to the broken phase in scalar electrodyna...
Extensions of the Standard Model (SM) Higgs sectorallow for a rich cosmological history around the e...