Ask a group of particle theorists about low energy hadron physics and they will say that this is a subject that belongs to the age of the dinosaurs. However, it is GeV physics that controls the outcome of every hadronic interaction at almost every energy. Confinement of quarks and gluons (and any other super-constituents) means that it is the femto-universe that determines what experiments detect. What we have to learn at the start of the 21st century is discussed
Rapporteur talk at the Lepton-Photon Conference, Rome, July 2001: reviewing the evidence and strateg...
The paper is devoted to the construction of low-energy quark scattering amplitudes. Bootstrap quark ...
International audienceWe present an analysis of the dynamics of two-flavour QCD in the vacuum. Speci...
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
The past leaves the surprising experimental successes of the simple constituent quark model to be ex...
In a style of popular article, we discuss models of hadronic structure and their relation with model...
Quantum Chromodynamics (QCD) is the theory of the strong interactions. We review descriptions of had...
The oldest enigma in fundamental particle physics is: Where do the observed masses of elementary p...
The Higgs boson is responsible for roughly 1% of the visible mass in the Universe. Obviously, theref...
Quantum Chromodynamics (QCD) is the theory governing the strong interaction of particles. It describ...
The colour, flavour, spin and J^PC of glueballs and hybrid mesons and baryons are constructed in an ...
These lectures contain an introduction to the following topics: 1) Phenomenology of the hadron spect...
The physical model (PhsMdl) of the hadrons is offered by means of the obviousanalogy with the transp...
At low temperatures, we expect that all QCD observables are defined in terms of hadrons. This includ...
We extend our proposal that major universality classes of hadronic matter can be understood, and in ...
Rapporteur talk at the Lepton-Photon Conference, Rome, July 2001: reviewing the evidence and strateg...
The paper is devoted to the construction of low-energy quark scattering amplitudes. Bootstrap quark ...
International audienceWe present an analysis of the dynamics of two-flavour QCD in the vacuum. Speci...
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
The past leaves the surprising experimental successes of the simple constituent quark model to be ex...
In a style of popular article, we discuss models of hadronic structure and their relation with model...
Quantum Chromodynamics (QCD) is the theory of the strong interactions. We review descriptions of had...
The oldest enigma in fundamental particle physics is: Where do the observed masses of elementary p...
The Higgs boson is responsible for roughly 1% of the visible mass in the Universe. Obviously, theref...
Quantum Chromodynamics (QCD) is the theory governing the strong interaction of particles. It describ...
The colour, flavour, spin and J^PC of glueballs and hybrid mesons and baryons are constructed in an ...
These lectures contain an introduction to the following topics: 1) Phenomenology of the hadron spect...
The physical model (PhsMdl) of the hadrons is offered by means of the obviousanalogy with the transp...
At low temperatures, we expect that all QCD observables are defined in terms of hadrons. This includ...
We extend our proposal that major universality classes of hadronic matter can be understood, and in ...
Rapporteur talk at the Lepton-Photon Conference, Rome, July 2001: reviewing the evidence and strateg...
The paper is devoted to the construction of low-energy quark scattering amplitudes. Bootstrap quark ...
International audienceWe present an analysis of the dynamics of two-flavour QCD in the vacuum. Speci...