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- W2029953232 abstract "I t has been shown by several authors that high-energy hadron-hadron elasticscattering processes are describable in terms of the constituent model (1-4) with the help of an extension of Glauber's scattering theory for multiparticle systems (s). On the other hand, both elastic and inelastic diffraction processes can be given a unified description in Good and Walker's shadow approach (diffractive eigen-channel approach) (6,7). Glauber's method will prove to lead us natural ly to the Good and Walker's approach, if the following points are taken into consideration. First, the state newly formed through absorption (nondiffractive state) should be orthogonal to any constituent state (diffractive state) that is composing the incident hadrons: two-component ansatz. Second, so small is the volume of the space-time region in which absorption for constituents occurs that any state for transmitt ing constituents may scarcely undergo transition to another: the sudden-impulse approximation. In this note the authors present a shadow approach as an incorporation of the above two methods (s) and exhibit some results for phenomenological applications. From the two assumptions the S-matrix for collisions between two incident hadrons at the given impact parameter, b, turns out to be nearly diagonalized in the diffractive subspace of which bases are free-constituent states. We may identify a free-constituent state with a diffractive eigenstate ill the eigenchannel formalism and define the total products of constituent-constituent (c-e) scattering matrices, extended Glauber's pro-" @default.
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- W2029953232 date "1981-02-01" @default.
- W2029953232 modified "2023-09-26" @default.
- W2029953232 title "A shadow approach to elastic and inelastic diffractions of composite hadrons" @default.
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- W2029953232 doi "https://doi.org/10.1007/bf02817068" @default.
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