The thermodynamics of the O(N) linear and nonlinear sigma models in 3 + 1 dimensions is studied. We calculate the pressure to next-to-leading order in the 1/N expansion and show that at this order, temperature-independent renormalization is only possible at the minimum of the effective potential. The 1/N expansion is found to be a good expansion for N as low as 4, which is the case relevant for low-energy QCD phenomenology. We consider the cases with and without explicit symmetry breaking. We show that previous next-to-leading-order calculations of the pressure are either breaking down at the temperatures of interest, or based on unjustifiable high-energy approximations
We discuss the thermodynamics of the O(N) model across the corresponding phase transition using the ...
We study the O(N) linear sigma model with spontaneous symmetry breaking at finite temperature in the...
We study the renormalization group flow of the O(N) nonlinear sigma model in arbitrary dimensions. T...
The thermodynamics of the O(N) linear and nonlinear sigma models in 3+1 dimensions is studied. We ca...
The thermodynamics of the O(N) nonlinear sigma model in 1+1 dimensions is studied. We calculate the ...
We study relativistic Bose-Einstein condensation at finite density and temperature using the linear ...
We study the $O(N)$ symmetric linear sigma-model at finite temperature as the low-energy effective ...
26 pages, 9 figures, uses RevTeX4-1, published versionInternational audienceWe discuss the thermodyn...
Using the 1/N expansion, we study the influence of quantum instantons on the thermodynamics of the C...
We perform high-accuracy calculations of the critical exponent gamma and its subleading exponent for...
The finite-temperature effective potential of the O(N) linear sigma model is studied, with emphasis ...
We study the effective potential of three-dimensional O(N) models. In statistical physics the effect...
Giacosa F, Lottini S, Seel E, Smith D. Pressure of the O(N) Model in 1+1 Dimensions. In: AIP Conf. ...
International audienceThe recently proposed renormalization group improved optimized perturbation th...
We consider the effective potential in three-dimensional models with O(N) symmetry. For generic valu...
We discuss the thermodynamics of the O(N) model across the corresponding phase transition using the ...
We study the O(N) linear sigma model with spontaneous symmetry breaking at finite temperature in the...
We study the renormalization group flow of the O(N) nonlinear sigma model in arbitrary dimensions. T...
The thermodynamics of the O(N) linear and nonlinear sigma models in 3+1 dimensions is studied. We ca...
The thermodynamics of the O(N) nonlinear sigma model in 1+1 dimensions is studied. We calculate the ...
We study relativistic Bose-Einstein condensation at finite density and temperature using the linear ...
We study the $O(N)$ symmetric linear sigma-model at finite temperature as the low-energy effective ...
26 pages, 9 figures, uses RevTeX4-1, published versionInternational audienceWe discuss the thermodyn...
Using the 1/N expansion, we study the influence of quantum instantons on the thermodynamics of the C...
We perform high-accuracy calculations of the critical exponent gamma and its subleading exponent for...
The finite-temperature effective potential of the O(N) linear sigma model is studied, with emphasis ...
We study the effective potential of three-dimensional O(N) models. In statistical physics the effect...
Giacosa F, Lottini S, Seel E, Smith D. Pressure of the O(N) Model in 1+1 Dimensions. In: AIP Conf. ...
International audienceThe recently proposed renormalization group improved optimized perturbation th...
We consider the effective potential in three-dimensional models with O(N) symmetry. For generic valu...
We discuss the thermodynamics of the O(N) model across the corresponding phase transition using the ...
We study the O(N) linear sigma model with spontaneous symmetry breaking at finite temperature in the...
We study the renormalization group flow of the O(N) nonlinear sigma model in arbitrary dimensions. T...