AB
The first use of a hydrogen bubble chamber to detect neutrinos, on 13 November 1970, at Argonne National Laboratory. Here a neutrino hits a proton in a hydrogen atom; the collision occurs at the point where three tracks emanate on the right of the photograph.
CompositionElementary particle
StatisticsFermionic
FamilyLeptons, antileptons
GenerationFirst (ν
), second (ν
), and third (ν
)
InteractionsWeak interaction and gravitation
Symbolν
 , ν
 , ν
 , ν
 , ν
 , ν
Particlespin: ⁠±+1/2⁠ħ, chirality: Left, weak isospin: +⁠1/2⁠, lepton nr.: +1, “flavor” in { e, μ, τ }
Antiparticlespin: ⁠±+1/2⁠ħ, chirality: Right, weak isospin: −⁠1/2⁠, lepton nr.: −1, “flavor” in { e, μ, τ }
Theorized• ν
, electron neutrino : Wolfgang Pauli (1930)
• ν
, muon neutrino : late 1940s
• ν
, tau neutrino : mid-1970s
Discovered• ν
: Clyde Cowan , Frederick Reines (1956)
• ν
: Leon Lederman , Melvin Schwartz and Jack Steinberger (1962)
• ν
: DONUT collaboration (2000)
Types3 types: electron neutrino (ν
), muon neutrino (ν
), and tau neutrino (ν
)
Mass< 0.120 eV/c (< 2.14×10 kg), cosmological limit, sum of 3 “flavors”1
Electric chargee
Spin⁠1/2⁠ħ
Weak isospinLH: +⁠1/2⁠, RH: 0
Weak hyperchargeLH: −1, RH: 0
BL−1
X−3

Neutrino

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Footnotes

  1. Olive, K.A.; et al. (Particle Data Group) (2024). Navas, S.; et al. (eds.). “Sum of neutrino masses” (PDF). Physical Review D. 110: 030001 – via Lawrence Berkeley Laboratory (lbl.gov).