Flavour symmetry — meaning?
Approximate invariance treating quark flavours interchangeably.
Isospin SU(2) — quarks?
Groups up and down quarks into a doublet.
SU(3) flavour symmetry — role?
Organizes light quarks into multiplets, relates hadron properties.
Flavour multiplets — purpose?
Classify hadron states with related quantum numbers.
Refined flavour symmetry — focus?
Combines quark-flavour states into hadron wavefunctions.
QCD — what?
Quantum field theory of strong interactions via colour charge.
Local gauge invariance — requirement?
Physics unchanged under position-dependent gauge transformations.
Color SU(3) — symmetry?
Non-Abelian gauge symmetry governing quark transformations.
Gluon — what?
Gauge boson mediating the strong force, carries colour.
Non-Abelian gauge theory — feature?
Generators do not commute, gluons self-interact.
Colour confinement — phenomenon?
Coloured quarks/gluons cannot be isolated as free particles.
Asymptotic freedom — behaviour?
Weakens at high energies, allows perturbative QCD.
QCD in e+e− — role?
Produces hadrons via quark hadronization after annihilation.
Hadron collisions — model?
Parton model treats hadrons as quark/gluon constituents.
Colour factors — what?
Numerical weights from colour algebra affecting amplitudes.
Force carriers — gluons?
Gluons mediate strong interaction between coloured partons.
Weak charged current — effect?
Couples quarks/leptons, changes flavour via W exchange.
Coupling constant g — significance?
Sets interaction strength; amplitude scales with g².
W boson — what?
Mediator of charged-current weak interactions, changes flavour.
Chiral structure — describes?
Weak interactions couple differently to left/right-handed fermions.
Muon decay — arrow?
Arrow points to antiparticle: electron antineutrino.
Lepton universality — hypothesis?
Weak coupling is equal for all charged leptons.
Neutrino scattering — process?
Neutrinos transfer energy/momentum to matter.
Ionisation loss — at low v?
Largest, scales as 1/v².
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1. What does isospin SU(2) describe in flavour symmetry?
2. What is the local gauge principle of Quantum Chromodynamics?
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