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No-Pole S-Matrix Fit to the Δ(1236) Resonance

L. Fonda

G. C. Ghirardi

G. L. Shaw*

  • International Centre for Theoretical Physics, Trieste, Italy

  • Istituto di Fisica Teorica dell'Università, Trieste, Italy

  • International Centre for Theoretical Physics, Trieste, Italy

  • *Permanent address: Physics Department, University of California, Irvine, California 92664.

Phys. Rev. D 8, 353 – Published 1 July, 1973

DOI: https://doi.org/10.1103/PhysRevD.8.353

Abstract

Recently measurements of πN 3-3 phase shifts have been made to an accuracy of about 0.1°. We show that the 14 experimental points can be fitted with a 4-parameter no-pole S matrix (having all the usually accepted analytic properties) to a precision of 1°. Whereas this is unacceptable as a fit to the precisely determined Δ++, it is a better accuracy than that for which all the other elementary particle resonances are known. We conclude that one should associate a resonance with a Breit-Wigner form (implying an S-matrix pole) because of the physics in the problem, such as a symmetry model, and not because of the ease in fitting certain experimental data. Thus we stress the need for high-accuracy data to help settle the problem of resonances (such as the Z*'s) whose dynamic origin might be questionable.

References (4)

  1. G. Calucci, L. Fonda, and G. C. Ghirardi, Phys. Rev. 166, 1719 (1968)
  2. A. A. Carter, J. R. Williams, D. V. Bugg, P. J. Bussey, and D. R. Dance, Nucl. Phys. B26, 445 (1971)
  3. J. S. Ball, R. R. Campbell, P. S. Lee, and G. L. Shaw, Phys. Rev. Lett. 28, 1143 (1972)
  4. Omitted endnote

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