When studied at finite temperature, Yang-Mills theories in $3+1$ dimensions display the presence of confinement/deconfinement phase transitions, which are known to be of first order -- the $SU(2)$ gauge theory being the exception. Theoretical as well as phenomenological considerations indicate that it is essential to establish a precise characterisation of these physical systems in proximity of such phase transitions. We present and test a new method to study the critical region of parameter space in non-Abelian quantum field theories on the lattice, based upon the Logarithmic Linear Relaxation (LLR) algorithm. We apply this method to the $SU(3)$ Yang Mills lattice gauge theory, and perform extensive calculations with one fixed choice of la...
We give an analytic demonstration that the 3+1-dimensional large N SU(N) pure Yang-Mills theory, com...
The equation of state of the SU(3) Yang–Mills theory is determined in the deconfined phase with a pr...
Data release for paper: Lucini, B., Mason, D., Piai, M., Rinaldi, E., & Vadacchino, D. (2023). First...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
First-order phase transitions in the early universe might produce a detectable background of gravita...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Many models of composite dark matter feature a first-order confinement transition in the early Unive...
Abstract: We present a lattice study of the equation of state in Yang-Mills theory based on the exce...
Journal of High Energy Physics 2015.3 (2015): 057 reproduced by permission of Scuola Internazionale ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
We present a high-precision lattice calculation of the equation of state in the confining phase of S...
We give an analytic demonstration that the 3+1-dimensional large N SU(N) pure Yang-Mills theory, com...
The equation of state of the SU(3) Yang–Mills theory is determined in the deconfined phase with a pr...
Data release for paper: Lucini, B., Mason, D., Piai, M., Rinaldi, E., & Vadacchino, D. (2023). First...
When studied at finite temperature, Yang-Mills theories in 3 + 1 dimensions display the presence of ...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
First-order phase transitions in the early universe might produce a detectable background of gravita...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Extensions of the standard model that lead to first-order phase transitions in the early universe ca...
Many models of composite dark matter feature a first-order confinement transition in the early Unive...
Abstract: We present a lattice study of the equation of state in Yang-Mills theory based on the exce...
Journal of High Energy Physics 2015.3 (2015): 057 reproduced by permission of Scuola Internazionale ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
We present a lattice study of the equation of state in Yang-Mills theory based on the exceptional G ...
We present a high-precision lattice calculation of the equation of state in the confining phase of S...
We give an analytic demonstration that the 3+1-dimensional large N SU(N) pure Yang-Mills theory, com...
The equation of state of the SU(3) Yang–Mills theory is determined in the deconfined phase with a pr...
Data release for paper: Lucini, B., Mason, D., Piai, M., Rinaldi, E., & Vadacchino, D. (2023). First...