Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5376751 | Chemical Physics | 2006 | 11 Pages |
Abstract
The energy of core-excited Neâ(1sâ1nâ) atoms inside bulk Ne is computed using a joint pseudopotential-wave packet propagation approach. Special care is taken to ensure the proper dielectric properties of bulk Ne together with its 3D-geometric structure. Results are compared with available X-ray absorption experimental results on the (1sâ1np) excitons. Analysis of the state energy and of the wave-function of the excited nâ electron allows to define two different regimes for the perturbation of the outer nâ electron by the neighbouring Ne atoms in the crystal: confinement in the cage formed by the first Ne neighbours for low-lying states and Rydberg states in a screened Coulomb potential for the higher-lying states. An effective screened spherically symmetric potential representing well the electron-hole interaction in the Neâ(1sâ1nâ) atoms inside bulk Ne is proposed, based on the analysis of the present 3D-modelling.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
J.P. Gauyacq, A.K. Kazansky,