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THEORY OF MESONS, BARYONS, AND RESONANCES

Journal Article · · Nuclear Physics (Netherlands) Divided into Nucl. Phys. A and Nucl. Phys. B
A theory of mesons, baryons, and resonances is developed in the three- dimensional isospace by assuming that the resonances should be expected to satisfy the same symmetry requirements as the elementary mesons and baryons. It is also assumed that the effective Lagrangian density for strong interactions should be invariant not only for arbitrary rotations of the axes in the isospace but also for simultaneous rotations of the axes in their complex planes. Besides the usual eight mesons and eight baryons, the formalism predicts the existence of additional particles and resonances with higher hypercharges and charges. In particular, the theory is able to account for the singly charged particles with anomalous hypercharges observed in cosmic ray stars, and many of the resonances observed in meson-baryon interactions. (auth)
Research Organization:
Wayne State Univ., Detroit
NSA Number:
NSA-17-031312
OSTI ID:
4679116
Journal Information:
Nuclear Physics (Netherlands) Divided into Nucl. Phys. A and Nucl. Phys. B, Journal Name: Nuclear Physics (Netherlands) Divided into Nucl. Phys. A and Nucl. Phys. B Vol. Vol: 44; ISSN NUPHA
Country of Publication:
Country unknown/Code not available
Language:
English

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