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SU(3) breaking in neutral current axial matrix elements and the spin content of the nucleon

1996/11/01 by Martin J. Savage, James Walden · 6 citations
Physics and Astronomy · #Neutrino Physics Research #Particle physics theoretical and experimental studies #Quantum Chromodynamics and Particle Interactions #hep-ph #nucl-th

paper · pdf · doi:10.1103/physrevd.55.5376

published as Phys.Rev. D55 (1997) 5376-5384 · 16 pages, 3 figures, latex

arxiv created 1996/11/01 · openalex publication_date 1997/05/01 · arxiv updated 2009/11/30 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

We examine the effects of SU(3) breaking in the matrix elements of the flavor-diagonal axial-vector currents between octet baryon states. Our calculations of K, \ensuremathη, and \ensuremathπ loops indicate that the SU(3) breaking may be substantial for some matrix elements and at the very least indicate large uncertainties. In particular, the strange axial matrix element in the proton determined from the measurements of g1(x) is found to have large uncertainties and might yet be zero. We estimate the strange axial matrix element in the proton to be \ensuremath-0.35\ensuremath\lesssim\ensuremathΔs\ensuremath\lesssim0 and the matrix element of the flavor-singlet current in the proton to be \ensuremath-0.1\ensuremath\lesssim\ensuremathΣ\ensuremath\lesssim+0.3 from the E143 measurement of \ensuremath∫dxg1(x)=0.127\ifmmode±\else\textpm\fi0.004\ifmmode±\else\textpm\fi0.010. The up-quark content of the \ensuremathΞ^\ensuremath- is discussed and its implications for nonleptonic weak processes discussed. We also estimate the matrix element of the axial-vector current coupling to the Z0 between all octet baryon states. This may be important for neutrino interactions in dense nuclear environments, where hyperons may play an important role.

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