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- W2047495514 abstract "This chapter discusses the several methods of inner shell Coulomb ionizations by incident nuclei. The first treatment by the quantum mechanics of the ionization process was based on the Bethe–Born approximation. In this approximation, the incident charged particles are treated as plane waves, whereas the target electrons are described by hydrogenic wavefunctions. The interaction between the projectile and the electron is treated to first order. Garcia also introduced the binary encounter approximation model (BEA) for the treatment of inner-shell ionizations by heavy charged particles. In this model, the ionization process is considered as a classical impact between the projectile and a free target electron. The role ascribed to the rest of the atom is simply to provide the electron considered with a velocity distribution in its initial state. In the semiclassical approximation (SCA) model for atomic Coulomb excitation, the motion of the impinging particle in the field of the target nucleus is treated classically, whereas the transition of the inner-shell electron to the continuum is studied from the point of view of quantum mechanics. The inner-shell Coulomb ionization processes in collisions among very heavy atoms can be crucial for a possible test of quantum electrodynamics of strong fields." @default.
- W2047495514 created "2016-06-24" @default.
- W2047495514 creator A5008035695 @default.
- W2047495514 date "1976-01-01" @default.
- W2047495514 modified "2023-10-05" @default.
- W2047495514 title "Inner Shell Ionization by Incident Nuclei" @default.
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- W2047495514 doi "https://doi.org/10.1016/s0065-2199(08)60032-9" @default.
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