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G-parity

In particle physics, G-parity is a multiplicative quantum number that results from the generalization of C-parity to multiplets of particles.

C-parity applies only to neutral systems; in the pion triplet, only π0 has C-parity. On the other hand, strong interaction does not see electrical charge, so it cannot distinguish amongst π+, π0 and π. We can generalize the C-parity so it applies to all charge states of a given multiplet:

where ηG = ±1 are the eigenvalues of G-parity. The G-parity operator is defined as

where is the C-parity operator, and I2 is the operator associated with the 2nd component of the isospin "vector". G-parity is a combination of charge conjugation and a π rad (180°) rotation around the 2nd axis of isospin space. Given that charge conjugation and isospin are preserved by strong interactions, so is G. Weak and electromagnetic interactions, though, are not invariant under G-parity.

Since G-parity is applied on a whole multiplet, charge conjugation has to see the multiplet as a neutral entity. Thus, only multiplets with an average charge of 0 will be eigenstates of G, that is

(see Q, B, Y).

In general

where ηC is a C-parity eigenvalue, and I is the isospin.

Since no matter whether the system is fermion-antifermion or boson-antiboson, always equals to , we have

.

See also edit

References edit

  • T. D. Lee and C. N. Yang (1956). "Charge conjugation, a new quantum number G, and selection rules concerning a nucleon-antinucleon system". Il Nuovo Cimento. 3 (4): 749–753. Bibcode:1956NCim....3..749L. doi:10.1007/BF02744530. S2CID 119539007.
  • Charles Goebel (1956). "Selection Rules for NN̅ Annihilation". Phys. Rev. 103 (1): 258–261. Bibcode:1956PhRv..103..258G. doi:10.1103/PhysRev.103.258.

parity, particle, physics, multiplicative, quantum, number, that, results, from, generalization, parity, multiplets, particles, parity, applies, only, neutral, systems, pion, triplet, only, parity, other, hand, strong, interaction, does, electrical, charge, ca. In particle physics G parity is a multiplicative quantum number that results from the generalization of C parity to multiplets of particles C parity applies only to neutral systems in the pion triplet only p0 has C parity On the other hand strong interaction does not see electrical charge so it cannot distinguish amongst p p0 and p We can generalize the C parity so it applies to all charge states of a given multiplet G p p 0 p h G p p 0 p displaystyle mathcal G begin pmatrix pi pi 0 pi end pmatrix eta G begin pmatrix pi pi 0 pi end pmatrix where hG 1 are the eigenvalues of G parity The G parity operator is defined as G C e i p I 2 displaystyle mathcal G mathcal C e i pi I 2 where C displaystyle mathcal C is the C parity operator and I2 is the operator associated with the 2nd component of the isospin vector G parity is a combination of charge conjugation and a p rad 180 rotation around the 2nd axis of isospin space Given that charge conjugation and isospin are preserved by strong interactions so is G Weak and electromagnetic interactions though are not invariant under G parity Since G parity is applied on a whole multiplet charge conjugation has to see the multiplet as a neutral entity Thus only multiplets with an average charge of 0 will be eigenstates of G that is Q B Y 0 displaystyle bar Q bar B bar Y 0 see Q B Y In general h G h C 1 I displaystyle eta G eta C 1 I where hC is a C parity eigenvalue and I is the isospin Since no matter whether the system is fermion antifermion or boson antiboson h C displaystyle eta C always equals to 1 L S displaystyle 1 L S we have h G 1 S L I displaystyle eta G 1 S L I See also editQuark modelReferences editT D Lee and C N Yang 1956 Charge conjugation a new quantum number G and selection rules concerning a nucleon antinucleon system Il Nuovo Cimento 3 4 749 753 Bibcode 1956NCim 3 749L doi 10 1007 BF02744530 S2CID 119539007 Charles Goebel 1956 Selection Rules for NN Annihilation Phys Rev 103 1 258 261 Bibcode 1956PhRv 103 258G doi 10 1103 PhysRev 103 258 nbsp This particle physics related article is a stub You can help Wikipedia by expanding it vte Retrieved from https en wikipedia org w index php title G parity amp oldid 1174211183, wikipedia, wiki, book, books, library,

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