Physical Review Letters · 2000 · 94 citations · 6 references
PhysicsMeson StructureNatural SciencesMeson SpinParticle PhysicsQuantum Field TheoryGoldstone BosonNon-perturbative QcdMeson SpectroscopyMeson SpectrumQuantum ChromodynamicsMany-body Problem
Results from an extensive relativistic many-body analysis utilizing a realistic effective QCD Hamiltonian are presented for the meson spectrum. A comparative numerical study of the BCS, Tamm-Dancoff (TDA), and RPA treatments provides new, significant insight into the condensate structure of the vacuum, the chiral symmetry governance of the pion, and the meson spin, orbital, and flavor mass splitting contributions. In contrast to a previous glueball application, substantial quantitative differences are computed between TDA and RPA for the light quark sector with the pion emerging as a Goldstone boson only in the RPA.
6
<i>The Nuclear Many-Body Problem</i>
Peter Smith Ring, Peter Schuck, M. R. Strayer · Physics Today · 1983 · 3.6K citations
Nuclear Dynamics, Experimental Nuclear Physics, Nuclear Structure +14
Chiral symmetry breaking in Coulomb gauge QCD
S.L. Adler, Anne-Christine Davis · Nuclear Physics B · 1984 · 225 citations
Glueball Spectroscopy in a Relativistic Many-Body Approach to Hadronic Structure
Adam P. Szczepaniak, Eric S. Swanson, Chueng‐Ryong Ji et al. · Physical Review Letters · 1996 · 157 citations · Full text
Engineering, Hadron Physic, Physics +15