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- W2324100305 abstract "Vortices are an inherent property of the velocity fields of complex, time-dependent, Schrodinger wave functions $ensuremath{psi}$ occurring where both the real and the imaginary parts of $ensuremath{psi}$ vanish. They have been known since the early work of Dirac on magnetic monopoles and have frequently been studied theoretically. The possibility of observing them by exploiting an ``imaging theorem'' that relates atomic wave functions to measured electron momentum distributions has recently been proposed. Using the Coulomb-Born approximation, we examine ionization of a $K$-shell electron of a model carbon atom by fast electron impact. For an incident electron energy of 1801.2 eV and a scattering angle of ${4}^{ensuremath{circ}}$, we find a vortex in the velocity field associated with a zero in the ionization $T$-matrix element and hence in the triply differential cross section, and we obtain a segment of the vortex line. Angular momentum transfer is essential to produce the vortex in the velocity field and the corresponding zero in the ionization $T$-matrix element and in the triply differential cross section." @default.
- W2324100305 created "2016-06-24" @default.
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- W2324100305 date "2014-12-12" @default.
- W2324100305 modified "2023-10-16" @default.
- W2324100305 title "Effect of a vortex in the triply differential cross section for electron-impactK-shell ionization of carbon" @default.
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- W2324100305 doi "https://doi.org/10.1103/physreva.90.062709" @default.
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