Nature of Matter: Purposes of High Energy PhysicsLuke C. L. Yuan |
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amplitudes antiproton atomic baryon basic beams Berkeley Berkeley boson Brookhaven bubble chamber CALIFORNIA LIBRARY Cerenkov charge conservation coupling constant discovery dispersion relations divergences dynamical elastic scattering electron elementary particle physics example existence experimental experiments fermion fundamental fundamental interactions hadrons high energy accelerator high energy physics higher hypercharge important internal symmetry invariance isospin known Laboratory laws leptons Lorentz low energy magnetic MARSHAK meson momentum transfer multiplet muon nature neutrino neutron nuclear physics nuclei nucleon observed octet parameters parity perturbation theory phenomena Phys physicists pion possible predicted present problems processes properties proton quantum electrodynamics quantum mechanics quantum number quark question reactions renormalization representation S-matrix S-matrix elements scientific spark chamber spin ẞ decay strong interactions strongly interacting particles super high energy symmetry group theoretical theory of hadrons ticles tion total cross section triplet understanding unitary UNIVERSITY OF CALIFORNIA vector vertex functions weak interactions