Standard Model

E9293

The Standard Model is the fundamental theory in particle physics that describes the known elementary particles and their interactions (except gravity) through quantum field theories of electromagnetic, weak, and strong forces.

All labels observed (8)

How this entity was disambiguated

Statements (57)

Predicate Object
instanceOf gauge theory
physical theory
quantum field theory
aimsTo unify electromagnetic and weak interactions
basedOn quantum field theory
quantum mechanics
special relativity
completedWithDiscoveryOf Higgs boson
containsParticle Higgs boson
W boson
Z boson
bottom quark
charm quark
down quark
electron
electron neutrino
gluon
muon
muon neutrino
photon
strange quark
tau lepton
tau neutrino
top quark
up quark
describes electromagnetic interaction
elementary particles
strong interaction
weak interaction
developedIn 20th century
doesNotDescribe gravity
explains origin of particle masses
field particle physics
gaugeGroup SU(3)×SU(2)×U(1)
HiggsBosonDiscoveredAt Large Hadron Collider
HiggsBosonDiscoveryYear 2012
includesConcept spontaneous symmetry breaking
includesInteraction electroweak interaction
quantum chromodynamics
includesMechanism Higgs mechanism
limitation does not explain neutrino masses fully
does not include dark energy
does not include dark matter
predicts Higgs boson
W boson
Z boson
gluon
leptons
neutrinos
photon
quarks
status experimentally well confirmed
subtheory electroweak theory
quantum chromodynamics
usesSymmetryGroup SU(2)
SU(3)
U(1)

How these facts were elicited

Referenced by (75)

Full triples — surface form annotated when it differs from this entity's canonical label.

Higgs partOf Standard Model
subject surface form: Higgs boson
this entity surface form: Standard Model of particle physics
gluon isPartOf Standard Model
Englert areaOfInfluence Standard Model
subject surface form: François Englert
this entity surface form: Standard Model of particle physics
proton–antiproton collider at CERN testedTheory Standard Model
this entity surface form: Standard Model of particle physics
BASE relatedTo Standard Model
this entity surface form: Standard Model of particle physics
Cabibbo–Kobayashi–Maskawa matrix partOf Standard Model
this entity surface form: Standard Model of particle physics
Kobayashi–Maskawa theory partOf Standard Model
this entity surface form: Standard Model of particle physics
Kobayashi–Maskawa paper on CP violation (1973) mainSubject Standard Model
this entity surface form: Standard Model of particle physics
Kobayashi–Maskawa paper on CP violation (1973) theoreticalFramework Standard Model
this entity surface form: Standard Model of particle physics
Kobayashi–Maskawa paper on CP violation (1973) citedBy Standard Model
this entity surface form: Standard Model reviews
photon isMasslessIn Standard Model
Yang–Mills theory foundationOf Standard Model
this entity surface form: Standard Model of particle physics
DONUT experiment supportedTheory Standard Model
this entity surface form: Standard Model of particle physics
Richard Hagen influenced Standard Model
this entity surface form: Standard Model of particle physics
The God Particle mainSubject Standard Model
this entity surface form: standard model of particle physics
C. R. Hagen areaOfInfluence Standard Model
this entity surface form: Standard Model of particle physics
g-2 testsTheory Standard Model
this entity surface form: Standard Model of particle physics
Brookhaven E821 experiment testsTheory Standard Model
this entity surface form: Standard Model of particle physics
Collider Detector at Fermilab governedBy Standard Model
this entity surface form: Standard Model of particle physics
V–A theory compatibleWith Standard Model
this entity surface form: Standard Model of particle physics
Boson appearsIn Standard Model
this entity surface form: Standard Model of particle physics
Electron isDescribedBy Standard Model
this entity surface form: Standard Model of particle physics
Neutrino isComponentOf Standard Model
this entity surface form: Standard Model of particle physics
Experimental test of parity conservation in beta decay influenced Standard Model
this entity surface form: Standard Model of particle physics
Yukawa coupling appearsIn Standard Model
this entity surface form: Standard Model of particle physics