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Abstract:
In high energy reactions the production of spin (3/2)+ baryons is strongly suppressed in comparison with that of (1/2)+ baryons. I show that the observed λ broken SUf(3) symmetry in multihadron production is consistent with stochastic quark arrangement, and this self-consistency determines the ratios among SUf(3) singlet, octet and decuplet, including all of their excited states. But for (1/2)+ and (3/2)+ baryon production, as in the case of the popular models, then the strangeness suppression factor λ=<NS>/<Nu> completely determines the ratio of (3/2)+ to (1/2)+, and β=(1 + λ)/(3 + 2λ). The universality of this relation is emphasized.
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