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- W3181873309 abstract "Standard scattering theory (SST) in atomic, molecular, and optical physics is incomplete in that it does not adequately describe the behavior of the wave function at macroscopic distances from the scattering reaction volume, nor does it describe the manipulation of ejected particles in fields applied after the collision or the operation of modern detectors which employ external steering fields. Here, we extend formal scattering theory by incorporating semiclassical wave function propagation to and from macroscopic distances. This theory then is applicable to modern detection methods and to the pre- and post-collision manipulation by external static fields or time-varying laser fields. Furthermore, the standard approach is time independent but the increasing use of projectiles (particles, photons) defining a time-dependent scattering potential demands an overtly time-dependent approach. Here such a time-dependent theory describing the complete experimental procedure is developed and, by consistent use of semiclassical approximations in the asymptotic zones, is connected explicitly to the well-known time-independent equations of SST. Interference of matter waves in the continuum has been studied intensively and can be considered also as a scattering problem. Our semiclassical approach allows us to make direct contact to analogous interference experiments with classical light." @default.
- W3181873309 created "2021-07-19" @default.
- W3181873309 creator A5026808520 @default.
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- W3181873309 date "2021-01-01" @default.
- W3181873309 modified "2023-09-24" @default.
- W3181873309 title "Scattering theory with semiclassical asymptotes" @default.
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- W3181873309 doi "https://doi.org/10.1016/bs.aamop.2021.05.001" @default.
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