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- W2011485064 abstract "A semi-classical theory, derived from the Feynman path-integral formalism by applying the saddle point method, is formulated for elastic and inelastic heavy ion reactions. This theory is a natural extension of earlier semi-classical methods in the sense that classical, real, trajectories are extended to complex ones by an analytic continuation of Hamilton's equations. It describes properly the role played by the complex interaction and the resulting absorptive, refractive and diffractive phenomena. The connection with the WKB-approximation is discussed. A comparison between the results of three types of calculation is made: exact (quantum mechanical), semi-classical and the earlier semi-classical approach based on real trajectories. This shows the quantitative power of the semi-classical method presented here, not only for the elastic and inelastic cross sections but it also reproduces the quantum mechanical phase shifts, reflection coefficients and excitation coefficients in quite some detail, contrary to the earlier semi-classical calculations." @default.
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- W2011485064 date "1975-12-01" @default.
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- W2011485064 title "Semi-classical approximations to heavy ion scattering based on the Feynman path-integral method" @default.
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- W2011485064 doi "https://doi.org/10.1016/0370-1573(75)90059-9" @default.
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