Quantum gravity is an attempt to resolve incompatibilities between general relativity and quantum theory. Primordial field theory incorporates gravity and electrodynamics and has derived fermion mass gap, half integra...Quantum gravity is an attempt to resolve incompatibilities between general relativity and quantum theory. Primordial field theory incorporates gravity and electrodynamics and has derived fermion mass gap, half integral spin, and fractional charges. This paper extends PFT to hadron physics with a “solenoidal flux”-based explanation of quark confinement differing significantly from Lattice QCD “color flux”-based construction. The theory is presented qualitatively and used to predict hadronic and nuclear properties. Electrodynamic-based analogies help yield numerical results far more intuitively than corresponding QCD results. The origins of QCD and PFT are discussed. A more quantitative description of hadron dynamics is in progress.展开更多
In the past decade,more and more charmoniumlike and bottomoniumlike states have been reported in experiments,which have led us to extensive discussions on the underlying structure of these states.In this review,we bri...In the past decade,more and more charmoniumlike and bottomoniumlike states have been reported in experiments,which have led us to extensive discussions on the underlying structure of these states.In this review,we briefly summarize the experimental and theoretical status of these observed states.展开更多
文摘Quantum gravity is an attempt to resolve incompatibilities between general relativity and quantum theory. Primordial field theory incorporates gravity and electrodynamics and has derived fermion mass gap, half integral spin, and fractional charges. This paper extends PFT to hadron physics with a “solenoidal flux”-based explanation of quark confinement differing significantly from Lattice QCD “color flux”-based construction. The theory is presented qualitatively and used to predict hadronic and nuclear properties. Electrodynamic-based analogies help yield numerical results far more intuitively than corresponding QCD results. The origins of QCD and PFT are discussed. A more quantitative description of hadron dynamics is in progress.
基金National Natural Science Foundation of China(10647002)Guangxi Natural Science Foundation for Young Researchers(0991009)+1 种基金Foundation of Guangxi Education Department(200807MS112)Department of Science and Technology of Guangxi(2011GXNSFA018140)~~
基金supported by the National Natural Science Foundation of China (11222547,11175073 and 11035006)the Foundation of the National Excellent Doctoral Dissertation of China (200924)+2 种基金the Specialized Research Fund for the Doctoral Program of Higher Education (2012021111000)New Century Excellent Talents in Universitythe Fok Ying Tung Education Foundation (131006)
文摘In the past decade,more and more charmoniumlike and bottomoniumlike states have been reported in experiments,which have led us to extensive discussions on the underlying structure of these states.In this review,we briefly summarize the experimental and theoretical status of these observed states.