Isospin = up/down only (SU(2)); SU(3) = add strange (bigger flavour multiplets).
Local symmetry → gauge fields: SU(3) color rotations force gluons, and non-commuting generators make gluons self-interact.
Confinement = “can’t escape” at low energy; asymptotic freedom = “free to interact weakly” at high energy.
Colour charge → strong force → quarks confined into hadrons; in e+e−, hadrons signal QCD.
QCD = “Quarks carry Colour”; gluons are the “Colour messengers,” and colour factors are the “algebra weights” multiplying the amplitude.
W boson is heavy → weak decays are suppressed at low energy; charged current enables flavour change.
W-mediated charged current: flavour changes at the vertex; muon decay shows antiparticle arrows for antineutrinos.
: low → big loss (); high → slow rise (log in ).
Oscillations = phase drift: different masses → different phases → flavour change.
Ionisation is the steady “drip” for charged tracks; hadronic interactions are the rarer “hits” set by (bigger than radiation length).
Missing momentum points to neutrinos: if the vector sum of what you see isn’t zero, something invisible carried momentum away.
Containment is set by two material scales: (how fast the shower develops) and (where it slows via ionization).
| Date | Event |
|---|---|
| 2012 | Discovery of the Higgs boson at the LHC by the ATLAS and CMS experiments |
| 2013 | Copyright year shown as “© M. Thomson 2013” |
| 25 ns | LHC bunch spacing giving a collision frequency f = 40 MHz |
Standard Model interaction vertices
| Interaction | Flavour change | Main participants |
|---|---|---|
| Electromagnetism | Never changes flavour | All charged particles |
| Strong interaction | Never changes flavour | Only quarks |
| Weak charged-current interaction | Always changes flavour | All fermions |
Тествайте знанията си по Fundamentals of Particle Interactions с 12 въпроса с множество отговори с подробни корекции.
1. What does isospin SU(2) describe in flavour symmetry?
2. What is the local gauge principle of Quantum Chromodynamics?
Запомнете ключовите концепции на Fundamentals of Particle Interactions с 24 интерактивни флашкарти.
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.
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