We discuss our results on QCD with a number of fundamental fermions ranging from zero to sixteen. These theories exhibit a wide array of fascinating phenomena which have been under close scrutiny, especially in recent years, first and foremost is the approach to conformality. To keep this review focused we have chosen scale generation, or lack thereof, as a guiding theme, however the discussion will be set in the general framework of the analysis of the phases and phase transitions of strong interactions at zero and nonzero temperature
The strong force which bind quarks together is described by a relativistic quantum field theory call...
The understanding of matter at extreme temperatures or densities is of great importance since it is ...
We investigate within the standard model the possibility that nonperturbative QCD effects determine ...
We discuss our results on QCD with a number of fundamental fermions ranging from zero to sixteen. Th...
The theory of the strong interaction, Quantum Chromodynamics (QCD), describes the generation of hadr...
It is widely believed that chiral symmetry is spontaneously broken at zero temperature in the strong...
We analyze the phases of strong interactions in the space of the flavor number N-f, bare coupling g(...
We determine the flavour dependence of the renormalisation-group-invariant running interaction thro...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...
We analyze the phases of strong interactions in the space of the flavor number N-f, bare coupling g(...
In-medium field-theory is applied to different effective models and QCD to describe mass and isospin...
QCD is the well-established theory of strong interactions but of such a complex nature that outstand...
The strong coupling limit (beta_gauge = 0) of QCD offers a number of remarkable research possibiliti...
The role of scales in the physics of large few-body systems is reviewed. They are evidenced by consi...
In this contribution, we will discuss how the study of various fluctuation observables may be used t...
The strong force which bind quarks together is described by a relativistic quantum field theory call...
The understanding of matter at extreme temperatures or densities is of great importance since it is ...
We investigate within the standard model the possibility that nonperturbative QCD effects determine ...
We discuss our results on QCD with a number of fundamental fermions ranging from zero to sixteen. Th...
The theory of the strong interaction, Quantum Chromodynamics (QCD), describes the generation of hadr...
It is widely believed that chiral symmetry is spontaneously broken at zero temperature in the strong...
We analyze the phases of strong interactions in the space of the flavor number N-f, bare coupling g(...
We determine the flavour dependence of the renormalisation-group-invariant running interaction thro...
Matter described by quantum chromodynamics (QCD), the theory of strong interactions, may undergo pha...
We analyze the phases of strong interactions in the space of the flavor number N-f, bare coupling g(...
In-medium field-theory is applied to different effective models and QCD to describe mass and isospin...
QCD is the well-established theory of strong interactions but of such a complex nature that outstand...
The strong coupling limit (beta_gauge = 0) of QCD offers a number of remarkable research possibiliti...
The role of scales in the physics of large few-body systems is reviewed. They are evidenced by consi...
In this contribution, we will discuss how the study of various fluctuation observables may be used t...
The strong force which bind quarks together is described by a relativistic quantum field theory call...
The understanding of matter at extreme temperatures or densities is of great importance since it is ...
We investigate within the standard model the possibility that nonperturbative QCD effects determine ...