By G. Giacomelli

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In general, a graph in a semilogärithmic paper will show the general features of the reaction considered, whilst detailed features will be shown in separate graphs. Appendix B contains a listing of all 115 the experimental data available from the literature, while in Appendix A tables of interpolated values are given. The πΝ and K~N total cross-sections present a number of peaks, whose heights decrease with increasing energy. All these peaks are usually interpreted as resonances. The K+N and NN total cross-sections exhibit only a small number of structures, none of which is as pronounced as in the πΝ or K~N systems.

41) and (42) (with d = 1). TOTAL CROSS-SECTION MEASUREMENTS 1600 1700 1800 CM. ENERGY 1900 2000 (MeV) 117 FIG. 16. Breit-Wigner shapes for a baryon resonance with ER = 1800 MeV, Γ 0 = 80 MeV. The solid line is a plot of eq. (37), that is a relativistic Breit-Wigner with fixed width. The crosses represent the points computed according to the non-relativistic eq. (36). ) Notation Λ(1967) Λ(1830) Λ(2107) Λ(2344) Λ(2585) S -1 Ρ 0 0 0 0 0 3/2 ~ 5/2 + 7/2 ~ 9/2 + ? 0-80 1-08 1-70 2-28 2-92 1 1 1 1 1 1 5/25/2 + 7/2 + 9/2~?

8 LABORATORY MOMENTUM OF K" MESON (GeV/c) I 1800 I I I 2000 2200 2400 TOTAL cm. ENERGY (MeV) I 2600 I FIG. 24. The I = 0 and / = 1, KN cross-sections between 0-6 GeV/c and 3-4 GeV/c. (3) I 129 TOTAL CROSS-SECTION MEASUREMENTS 2-0 J 2200 2-2 2-4 2-6 2-8 3-0 3-2 Laboratory momentum of K" meson, GeV/c I I 2300 I I 2400 I I 2500 Total c m . energy, 1 I 2600 I I 2700 3-4 L MeV 36 U 1 1 (b) 35 - \ h 34 1 =0 32h r- 30, I 4> 1 1 1 I i 1 1 ^M*J 20 2-2 2-4 2-6 2-8 3-0 3-2 3-4 Laboratory momentum of K" meson, GeV/c J _ L _1_ - L I I I I I L 2700 2300 2400 2500 2200 2600 Total c m .

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