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AbstractAbstract
[en] This work examines the interaction between a heavy quark and its antiquark. By combining perturbative and non-perturbative methods, interaction potentials with an extended range of validity are derived from quantum chromodynamics. Using these potentials the spectra of the quarkonium bound states are calculated and compared with experimental results. This provides a new approach for determining the masses of the charm and bottom quark.
Primary Subject
Source
11 Dec 2012; 80 p; Diss. (Dr.rer.nat.)
Record Type
Miscellaneous
Literature Type
Thesis/Dissertation; Numerical Data
Report Number
Country of publication
B QUARKS, BOUND STATE, C QUARKS, CENTRAL POTENTIAL, CHARMONIUM, ENERGY SPECTRA, LATTICE FIELD THEORY, MASS SPECTRA, P STATES, PERTURBATION THEORY, QUANTUM CHROMODYNAMICS, QUARK-ANTIQUARK INTERACTIONS, REST MASS, S STATES, SCHROEDINGER EQUATION, THEORETICAL DATA, UPSILON-10023 MESONS, VIBRATIONAL STATES
BEAUTY PARTICLES, BOSONS, BOTTOMONIUM, CHARM PARTICLES, CONSTRUCTIVE FIELD THEORY, DATA, DIFFERENTIAL EQUATIONS, ELEMENTARY PARTICLES, ENERGY LEVELS, EQUATIONS, EXCITED STATES, FERMIONS, FIELD THEORIES, HADRONS, INFORMATION, INTERACTIONS, MASS, MESONS, NUMERICAL DATA, PARTIAL DIFFERENTIAL EQUATIONS, PARTICLE INTERACTIONS, POTENTIALS, QUANTUM FIELD THEORY, QUARKONIUM, QUARKS, SPECTRA, VECTOR MESONS, WAVE EQUATIONS
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