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Charm quark
Composition: Elementary particle
Statistical behavior: Fermion
Group: Quark
Generation: Second
Interaction: Strong, Weak, Electromagnetic force, Gravity
Symbol(s): c
Antiparticle: Charm antiquark (c)
Theorized: Sheldon Glashow,
John Iliopoulos,
Luciano Maiani (1970)
Discovered: Burton Richter et al. (SLAC)
(1974)
Samuel Ting et al. (BNL)
(1974)
Mass: 1.27+0.07−0.11 GeV/c2[1]
Decays into: Stable
Electric charge: +23 e
Color charge: Yes
Spin: 12
Weak isospin: LH: +12, RH: 0
Weak hypercharge: LH: +13, RH: +43

The charm quark or c quark (from its symbol, c) is the third most massive of all quarks, a type of elementary particle, and a major constituent of matter. Charm quarks are found in hadrons, which are subatomic particles made of quarks. Example of hadrons containing charm quarks include the J/ψ meson (J/ψ), D mesons (D), charmed Sigma baryons (Σc), and other charmed particles.

It, along with the strange quark is part of the second generation of matter, and has an electric charge of +23 e and a mass of 1.27+0.07−0.11 GeV/c2. Like all quarks, the charm quark is an elementary fermion with spin-12, and experiences all four fundamental interactions: gravitation, electromagnetism, weak interactions, and strong interactions. The antiparticle of the charm quark is the charm antiquark (sometimes called anticharm quark or simply anticharm), which differs from it only in that some of its properties have equal magnitude but opposite sign.

The existence of a fourth quark had been speculated by a number of authors around 1964 (for instance by James Bjorken and Sheldon Glashow[2]), but its prediction is usually credited to Sheldon Glashow, John Iliopoulos and Luciano Maiani in 1970 (see GIM mechanism).[3] The first charmed particle (a particle containing a charm quark) to be discovered was the the J/ψ meson. It was discovered by a team at the Stanford Linear Accelerator Center (SLAC), led by Burton Richter,[4] and one at the Brookhaven National Laboratory (BNL), led by Samuel Ting.[5]

The discovery of the J/ψ (and thus the charm quark) ushered a series of breakthrough which are collectively known as the November Revolution.

[edit] Hadrons containing charm quarks

Some of the hadrons containing charm quarks include:

[edit] Notes

  1. ^ C. Amsler et al. (Particle Data Group) (2009). "PDGLive Particle Summary". Particle Data Group. http://pdglive.lbl.gov/Rsummary.brl?nodein=Q004. Retrieved 2009-10-22. 
  2. ^ B. J. Bjorken, S. L. Glashow (1964). "Elementary particles and SU(4)". Physics Letters 11: 255–257. doi:10.1016/0031-9163(64)90433-0. 
  3. ^ S. L. Glashow, J. Iliopoulos, L. Maiani (1970). "Weak Interactions with Lepton–Hadron Symmetry". Physical Review D 2: 1285–1292. doi:10.1103/PhysRevD.2.1285. 
  4. ^ J.-E. Augustin et al. (1974). "Discovery of a Narrow Resonance in e+e Annihilation". Physical Review Letters 33: 1406. doi:10.1103/PhysRevLett.33.1406. 
  5. ^ J. J. Aubert et al. (1974). "Experimental Observation of a Heavy Particle J". Physical Review Letters 33: 1404. doi:10.1103/PhysRevLett.33.1404. 

[edit] Further reading





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