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Yuldashev, B.S.; Fazilova, Z.F.; Ismatov, E.I.; Kurmanbai, M.S.; Ajniyazova, G.T.; Tskhay, K.V.; Medeuova, A.B.
Proceedings of the third Eurasian conference on nuclear science and its application2004
Proceedings of the third Eurasian conference on nuclear science and its application2004
AbstractAbstract
[en] Study of elastic interactions of hadrons at high energies if of great interest due to the fact that the amplitude of this process is the simplest, and at the same time, it is a fundamental object for theoretical and experimental researches. Study of this process allows one to have a quantitative check of various theories and models, and to make a critical selection. By using of fundamental property of theory - unitarity condition of scattering matrix - elastic scattering can be connected with inelastic reaction. Based on S-channel unitarity condition expressing elastic amplitude via inelastic overlapping function, to study the latter, as well as to describe the experimentally measured characteristics of hadron-nucleon interactions at high-energies, as well as for results prediction. By using experimental data on differential cross-section of elastic scattering of hadrons at various energies and by theoretical information on ratio of a real part and an imaginary part of scattering amplitude δ(t) the t-dependence of inelastic and elastic overlapping functions is studied. Influence of a zigzag form of differential cross-section of elastic pp(p) scattering on profile function and inelastic overlapping function to violation of geometric scaling was studied. In frames of the scaling the general expressions for s- and t-dependences of inelastic overlapping function are derived. Comparison of this function in three elastic scattering models was carried out. It was demonstrated that one would need to assume that hadrons become blacker at central part in order to correctly describe experimental angular distribution data. Dependence of differential cross-section on transfer momentum square for elastic hadrons scattering at energies of ISR and SPS in the model of inelastic overlapping function is studied. (author)
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Uzbekistan Academy of Sciences, Institute of Nuclear Physics, Tashkent (Uzbekistan); Turkish Atomic Energy Authority, Ankara (Turkey); National Academy of Sciences of Azerbaijan, Baku (Azerbaijan); Institute of Nuclear Physics of Kazakhstan, Almaty (Kazakhstan); National Academy of Sciences of Kyrgyzstan, Bishkek (Kyrgyzstan); 375 p; Oct 2004; p. 197-202; 3. Eurasian conference on nuclear science and its application; Tashkent (Uzbekistan); 5-8 Oct 2004; 9 refs., 3 tabs.
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