In principle, observables as for example the sphaleron rate or the tunneling rate in a first-order phase transition are gauge-independent. However, in practice a gauge dependence is introduced in explicit perturbative calculations due to the breakdown of the gradient expansion of the effective action in the symmetric phase. We exemplify the situation using the effective potential of the Abelian Higgs model in the general renormalizable gauge. Still, we find that the quantitative dependence on the gauge choice is small for gauges that are consistent with the perturbative expansion
A complete calculation of the finite temperature effective potential for the abelian Higgs model to ...
The electroweak phase transition broke the electroweak symmetry. Perturbativemethods used to calcula...
A complete calculation of the finite temperature effective potential for the abelian Higgs model to ...
We propose a gauge-invariant formulation of the effective potential in terms of a gauge-invariant or...
We evaluate the gauge invariant effective potential for the composite field #sigma# = 2#PHI#"#d...
The effective action of a Higgs theory should be gauge-invariant. However, the quantum and/or therma...
The perturbative effective potential suffers infrared (IR) divergences in gauges with massless Golds...
Abstract Perturbative calculations of the effective potential evaluated at a broken minimum, V min, ...
The perturbative effective potential suffers infrared (IR) divergences in gauges with massless Golds...
Perturbative calculations of the effective potential evaluated at a broken minimum, $ V_{\text{min}}...
We study gauge dependence of gravitational waves produced from a first-order phase transition in cla...
Using the absolute stability requirement of the Standard Model vacuum, we compute the Higgs mass bou...
While the finite-temperature effective potential in a gauge theory is a gauge-dependent quantity, in...
The standard model effective potential is calculated at finite temperature to order g"4, #lambd...
Perturbative calculations of the effective potential evaluated at a broken minimum, Vmin, are plague...
A complete calculation of the finite temperature effective potential for the abelian Higgs model to ...
The electroweak phase transition broke the electroweak symmetry. Perturbativemethods used to calcula...
A complete calculation of the finite temperature effective potential for the abelian Higgs model to ...
We propose a gauge-invariant formulation of the effective potential in terms of a gauge-invariant or...
We evaluate the gauge invariant effective potential for the composite field #sigma# = 2#PHI#"#d...
The effective action of a Higgs theory should be gauge-invariant. However, the quantum and/or therma...
The perturbative effective potential suffers infrared (IR) divergences in gauges with massless Golds...
Abstract Perturbative calculations of the effective potential evaluated at a broken minimum, V min, ...
The perturbative effective potential suffers infrared (IR) divergences in gauges with massless Golds...
Perturbative calculations of the effective potential evaluated at a broken minimum, $ V_{\text{min}}...
We study gauge dependence of gravitational waves produced from a first-order phase transition in cla...
Using the absolute stability requirement of the Standard Model vacuum, we compute the Higgs mass bou...
While the finite-temperature effective potential in a gauge theory is a gauge-dependent quantity, in...
The standard model effective potential is calculated at finite temperature to order g"4, #lambd...
Perturbative calculations of the effective potential evaluated at a broken minimum, Vmin, are plague...
A complete calculation of the finite temperature effective potential for the abelian Higgs model to ...
The electroweak phase transition broke the electroweak symmetry. Perturbativemethods used to calcula...
A complete calculation of the finite temperature effective potential for the abelian Higgs model to ...