Real time excitations in the broken symmetry phase of the classical Abelian Higgs model are investigated numerically in the unitary gauge. Persistent correlation is detected at finite energy density between the scalar and the longitudinal vector modes, the latter itself displaying non-Gaussian fluctuations. The effect diminishes when the energy density is lowered. Candidate effective mode variables are constructed by non-linear canonical point transformations. Their dispersion relations and equations of state are carefully tested
Bödeker D. Effective dynamics of soft non-Abelian gauge fields at finite temperature. Physics Letter...
We present a detailed numerical study of the equilibrium and nonequilibrium dynamics of the phase tr...
We have recently proposed that the Standard Model Higgs might be responsible for generating the cosm...
Real time rearrangement of particle spectra is studied numerically in a U(1) Gauge+Higgs system, in ...
The one-loop effective action of the abelian and nonabelian Higgs models has been studied in various...
[[abstract]]In this paper we derive the general expression of a one-loop effective potential of the ...
In principle, observables as for example the sphaleron rate or the tunneling rate in a first-order p...
The quantum chaos in the finite-temperature Yang-Mills-Higgs system is studied. The energy spectrum ...
We discuss the mechanism of spontaneous symmetry breaking and the elementary excitations for a weakl...
We analyze the Hamiltonian time evolution of classical SU(2) Yang-Mills-Higgs theory with a fundamen...
In this thesis, we are dedicated to study the time evolution generated by the hamiltonian of a class...
Castorina P, Miller D, Satz H. Trace anomaly and quasi-particles in finite temperature SU(N) gauge t...
Topological excitations in lattice gauge theories are studied with an aim towards understanding the...
We consider deconfined matter in SU(N) gauge theory as an ideal gas of transversely polarized quasi-...
We present a quantifier of non-classical correlations for bipartite, multi-mode Gaussian states. It...
Bödeker D. Effective dynamics of soft non-Abelian gauge fields at finite temperature. Physics Letter...
We present a detailed numerical study of the equilibrium and nonequilibrium dynamics of the phase tr...
We have recently proposed that the Standard Model Higgs might be responsible for generating the cosm...
Real time rearrangement of particle spectra is studied numerically in a U(1) Gauge+Higgs system, in ...
The one-loop effective action of the abelian and nonabelian Higgs models has been studied in various...
[[abstract]]In this paper we derive the general expression of a one-loop effective potential of the ...
In principle, observables as for example the sphaleron rate or the tunneling rate in a first-order p...
The quantum chaos in the finite-temperature Yang-Mills-Higgs system is studied. The energy spectrum ...
We discuss the mechanism of spontaneous symmetry breaking and the elementary excitations for a weakl...
We analyze the Hamiltonian time evolution of classical SU(2) Yang-Mills-Higgs theory with a fundamen...
In this thesis, we are dedicated to study the time evolution generated by the hamiltonian of a class...
Castorina P, Miller D, Satz H. Trace anomaly and quasi-particles in finite temperature SU(N) gauge t...
Topological excitations in lattice gauge theories are studied with an aim towards understanding the...
We consider deconfined matter in SU(N) gauge theory as an ideal gas of transversely polarized quasi-...
We present a quantifier of non-classical correlations for bipartite, multi-mode Gaussian states. It...
Bödeker D. Effective dynamics of soft non-Abelian gauge fields at finite temperature. Physics Letter...
We present a detailed numerical study of the equilibrium and nonequilibrium dynamics of the phase tr...
We have recently proposed that the Standard Model Higgs might be responsible for generating the cosm...