KnowraPionLinked fromLinked fromThe 19 pages that link to Pion, each with the reason it gives.All 19Broader topic 10Related 7Compared with 2ProtonRelated: Pion exchange provides an effective description of forces between protons and neutrons.Strong interactionBroader topic: Pion exchange provides a useful account of attraction between nucleons.MesonBroader topic: Pions are the lightest mesons and dominate low-energy nuclear interactions.MuonCompared with: Pion decay is a major source of muons in cosmic-ray showers and accelerator beams.Nuclear forceRelated: Pion exchange provides a useful account of the nuclear force at distances near its range.NucleonCompared with: Pions can mediate nuclear forces but are not the proton-or-neutron constituents of nuclei.IsospinBroader topic: Its three charge states form an isospin-one multiplet.Strong nuclear forceBroader topic: Pion exchange provides a useful account of the force between nucleons at moderate distances.Hideki YukawaBroader topic: The pion’s mass and interactions made it the particle most closely matching Yukawa’s prediction.Yukawa potentialBroader topic: Yukawa’s proposed force carrier was later identified with the pion.AntiquarkBroader topic: Charged pions contain an up quark paired with a down antiquark, or the reverse.Goldstone theoremBroader topic: Its small but nonzero mass illustrates how explicit symmetry breaking modifies the ideal prediction.Melvin SchwartzRelated: Pions created by the proton beam decayed into muons and neutrinos for the test.Jack SteinbergerRelated: The experiment generated neutrinos when charged pions decayed into muons and neutrinos.Cecil Frank PowellBroader topic: Powell’s group identified the charged pion through its distinctive decay sequence.Exotic atomRelated: A negative pion can bind to a nucleus and interact through both electromagnetic and strong forces.Hadron eraBroader topic: Pions were among the abundant hadrons in the hot universe and helped mediate strong interactions.History of subatomic physicsRelated: Its discovery helped connect particle research with models of nuclear forces.Val Logsdon FitchRelated: Counting pion decay products distinguished the rare two-pion events from the usual long-lived-kaon decays.
KnowraPionLinked fromLinked fromThe 19 pages that link to Pion, each with the reason it gives.All 19Broader topic 10Related 7Compared with 2ProtonRelated: Pion exchange provides an effective description of forces between protons and neutrons.Strong interactionBroader topic: Pion exchange provides a useful account of attraction between nucleons.MesonBroader topic: Pions are the lightest mesons and dominate low-energy nuclear interactions.MuonCompared with: Pion decay is a major source of muons in cosmic-ray showers and accelerator beams.Nuclear forceRelated: Pion exchange provides a useful account of the nuclear force at distances near its range.NucleonCompared with: Pions can mediate nuclear forces but are not the proton-or-neutron constituents of nuclei.IsospinBroader topic: Its three charge states form an isospin-one multiplet.Strong nuclear forceBroader topic: Pion exchange provides a useful account of the force between nucleons at moderate distances.Hideki YukawaBroader topic: The pion’s mass and interactions made it the particle most closely matching Yukawa’s prediction.Yukawa potentialBroader topic: Yukawa’s proposed force carrier was later identified with the pion.AntiquarkBroader topic: Charged pions contain an up quark paired with a down antiquark, or the reverse.Goldstone theoremBroader topic: Its small but nonzero mass illustrates how explicit symmetry breaking modifies the ideal prediction.Melvin SchwartzRelated: Pions created by the proton beam decayed into muons and neutrinos for the test.Jack SteinbergerRelated: The experiment generated neutrinos when charged pions decayed into muons and neutrinos.Cecil Frank PowellBroader topic: Powell’s group identified the charged pion through its distinctive decay sequence.Exotic atomRelated: A negative pion can bind to a nucleus and interact through both electromagnetic and strong forces.Hadron eraBroader topic: Pions were among the abundant hadrons in the hot universe and helped mediate strong interactions.History of subatomic physicsRelated: Its discovery helped connect particle research with models of nuclear forces.Val Logsdon FitchRelated: Counting pion decay products distinguished the rare two-pion events from the usual long-lived-kaon decays.