Physics:Quantum exotic hadron

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A quantum exotic hadron is a hadronic state that does not fit the simple quark-antiquark meson or three-quark baryon classification. Examples include tetraquark candidates, pentaquark candidates, molecular hadrons, hybrid mesons, and possible glueballs.[1][2][3]

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Exotic hadron: beyond ordinary mesons and baryons.

Structure

Composite hadrons are described by quantum chromodynamics. Their observable properties arise from valence constituents, gluon fields, sea quark-antiquark pairs, orbital motion, and confinement.[4]

Experimental role

Hadrons are reconstructed through masses, lifetimes, decay channels, scattering patterns, and production rates. Their spectra and decays provide detailed tests of strong-interaction dynamics.[5]

See also

Table of contents (84 articles)

Index

Full contents

References

  1. "Exotic hadron". https://en.wikipedia.org/wiki/Exotic_hadron. 
  2. "Review of Particle Physics". Physical Review D 110 (3): 030001. 2024. DOI 10.1103/PhysRevD.110.030001. 
  3. Schwartz, Matthew D. (2014). Quantum Field Theory and the Standard Model. Cambridge University Press. ISBN 978-1-107-03473-0. 
  4. Schwartz, Matthew D. (2014). Quantum Field Theory and the Standard Model. Cambridge University Press. ISBN 978-1-107-03473-0. 
  5. "Review of Particle Physics". Physical Review D 110 (3): 030001. 2024. DOI 10.1103/PhysRevD.110.030001. 


Author: Harold Foppele


Source attribution: Physics:Quantum exotic hadron