A brief overview is given of what we know of the baryon and meson spectra, with a focus on what are the key internal degrees of freedom and how these relate to strong coupling QCD. The challenges, experimental, theoretical and phenomenological, for the future are outlined, with particular reference to a program at Jefferson Lab to extract hadronic states in which glue unambiguously contributes to their quantum numbers
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
Baryons are the combination of three quarks(antiquarks) configured by qqq(q¯q¯q¯). They are fermions...
The goal of this project was a systematic calculation, consistent with the mass spectrum, of electro...
Abstract. Tremendous progress has been made in mapping out the spectrum of hadrons over the past dec...
Understanding the hadron spectrum is one of the fundamental issues in modern particle physics. We kn...
The study of baryons can provide one with critical insights into the nature of QCD in the confinemen...
Novel forms of matter, such as states made of gluons (glueballs), multiquark mesons or baryons and h...
It has long been expected that the spectrum of hadrons in QCD would be far richer and extensive than...
A short review of current efforts to determine the highly excited state spectrum of QCD, and in part...
Quantum chromodynamics (QCD), the generally accepted theory for strong interactions, describes the i...
Abstract. The theory of the strong interaction, Quantum Chromodynamics (QCD), has been remarkably su...
I give an overview on experimental studies of the spectrum and the structure of the excited states o...
I review the results of hadron spectroscopy calculations from lattice QCD for an intended audience o...
Recent lattice results on the meson and baryon spectrum with a focus on the determination of hadroni...
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
Baryons are the combination of three quarks(antiquarks) configured by qqq(q¯q¯q¯). They are fermions...
The goal of this project was a systematic calculation, consistent with the mass spectrum, of electro...
Abstract. Tremendous progress has been made in mapping out the spectrum of hadrons over the past dec...
Understanding the hadron spectrum is one of the fundamental issues in modern particle physics. We kn...
The study of baryons can provide one with critical insights into the nature of QCD in the confinemen...
Novel forms of matter, such as states made of gluons (glueballs), multiquark mesons or baryons and h...
It has long been expected that the spectrum of hadrons in QCD would be far richer and extensive than...
A short review of current efforts to determine the highly excited state spectrum of QCD, and in part...
Quantum chromodynamics (QCD), the generally accepted theory for strong interactions, describes the i...
Abstract. The theory of the strong interaction, Quantum Chromodynamics (QCD), has been remarkably su...
I give an overview on experimental studies of the spectrum and the structure of the excited states o...
I review the results of hadron spectroscopy calculations from lattice QCD for an intended audience o...
Recent lattice results on the meson and baryon spectrum with a focus on the determination of hadroni...
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
Quantum Chromodynamics (QCD), the theory of strong interactions, in principle describes the interact...
Baryons are the combination of three quarks(antiquarks) configured by qqq(q¯q¯q¯). They are fermions...
The goal of this project was a systematic calculation, consistent with the mass spectrum, of electro...