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The 90 pages that link to Standard Model, each with the reason it gives.
Quantum field theoryBroader topic: It is the most extensively tested application of quantum field theory.
NeutrinoNarrower topic: Neutrinos are among its elementary particles, though their masses require an extension or modification.
Group theoryRelated: Its gauge symmetries are described using Lie groups.
Large Hadron ColliderNarrower topic: LHC measurements test the Standard Model and search for deviations from its predictions.
Gauge symmetryNarrower topic: Its electroweak and strong interactions are built from local gauge symmetries.
Élie CartanBroader topic: Its internal symmetries use Lie groups and representations developed through the tradition Cartan helped establish.
Particle physicsBroader topic: It organizes the particles and interactions at the center of the field.
Lie algebraNarrower topic: Its gauge symmetries are built from Lie groups and their Lie algebras.
SupersymmetryCompared with: It contains no supersymmetry or superpartners, despite its success in particle experiments.
Grand Unified TheoryNarrower topic: A grand unified theory must reproduce the Standard Model at accessible energies.
LeptonNarrower topic: It organizes leptons into three generations and specifies their electroweak interactions.
MuonNarrower topic: It classifies the muon and predicts its interactions with other particles.
Effective field theoryRelated: It is often treated as an effective theory that may give way to a deeper description at higher energies.
Murray Gell-MannNarrower topic: Gell-Mann’s quark model contributed to the particle framework incorporated into this broader theory.
Cabibbo–Kobayashi–Maskawa matrixNarrower topic: The CKM matrix is a parameter of its quark sector.
AntiparticleNarrower topic: It organizes particles and antiparticles into corresponding matter and antimatter states.
Higgs fieldNarrower topic: The Higgs field is the Standard Model’s scalar field.
Julian SchwingerNarrower topic: Schwinger’s field-theoretic methods helped establish tools later used throughout particle physics.
Elementary particleNarrower topic: It is the framework that classifies the known elementary particles.
Baryon asymmetryNarrower topic: Its known CP violation and baryon-number processes do not appear sufficient to explain the observed excess.
Gauge bosonRelated: It identifies the gauge bosons associated with three of the four known fundamental interactions.
Proton decayNarrower topic: Its renormalizable interactions conserve baryon number, leaving protons stable within the model.
Steven WeinbergNarrower topic: His electroweak work became a central part of this framework.
TechnicolorRelated: Technicolor seeks to extend its particle content and explain its electroweak symmetry-breaking sector.
ATLAS experimentNarrower topic: ATLAS precision measurements test the model’s predictions and probe where it may fail.
Peter HiggsNarrower topic: The Higgs field completes the Standard Model’s account of electroweak symmetry breaking and particle masses.
Sheldon GlashowNarrower topic: Electroweak theory became one of the Standard Model’s two principal gauge sectors.
Anomalous magnetic dipole momentNarrower topic: Its predicted anomaly combines electromagnetic, weak, and hadronic contributions.
KaonRelated: Kaon measurements test its predictions for quark mixing and CP violation.
PhysicsBroader topic: It accounts for electromagnetic, weak, and strong interactions, but not gravity.
Yukawa interactionNarrower topic: Its Higgs–fermion terms are the best-known realization of Yukawa interactions.
CMS experimentNarrower topic: CMS tests its predictions across a wide range of collision energies and processes.
Particle decayRelated: Its interaction rules predict many observed particle-decay channels.
Satyendra Nath BoseNarrower topic: Many force-carrying particles in the Standard Model are bosons, the class named after Bose.
Chien-Shiung WuNarrower topic: The weak interaction’s chiral structure, revealed by parity tests, became part of the Standard Model.
Electroweak baryogenesisCompared with: Its CP violation and electroweak transition are generally insufficient to explain the observed asymmetry through this mechanism.
LHCb experimentRelated: LHCb compares its precise measurements with Standard Model predictions to test the theory.
Muon decayNarrower topic: Muon decay is described by its electroweak sector and serves as a precision test.
François EnglertNarrower topic: Its electroweak sector incorporates the mechanism Englert helped establish.
November RevolutionNarrower topic: The discovery strengthened the four-quark structure that became part of the Standard Model.
Bottom quarkNarrower topic: It classifies the bottom quark as a third-generation matter particle.
Electroweak theoryNarrower topic: Electroweak theory forms two of the Standard Model’s three interaction sectors.
Hierarchy problemNarrower topic: Its Higgs sector contains the mass scale whose stability is questioned.
Matter (physics)Narrower topic: It classifies the particles that make up known forms of matter.
Tsung-Dao LeeNarrower topic: The Standard Model incorporates parity-violating weak interactions in its structure.
Wigner classificationRelated: Its particle spectrum is organized using the representation labels Wigner classified.
FermilabNarrower topic: Fermilab experiments have tested its predictions and exposed questions it leaves unresolved.
Up quarkNarrower topic: It classifies the up quark within the first generation of matter particles.
Burton RichterNarrower topic: Evidence for charm strengthened the emerging picture of quarks in the Standard Model.
Electroweak epochNarrower topic: The electroweak epoch is an early-universe setting governed by its electroweak sector.