Stabilization of Rydberg Atoms in Superintense Laser Fields
Scrinzi, A.;Elander, N.;Piraux, Bernard
(1993) Physical review. A, Atomic, molecular, and optical physics — Vol. 48, n° 4, p. R2527-R2530 (1993)
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Authors
Scrinzi, A.
Author
Elander, N.
Author
Piraux, BernardUCLouvain
Author
Abstract
We investigate numerically the stabilization of Rydberg states of atomic hydrogen in superintense laser light. No stabilization could be observed at frequencies comparable with the Rydberg energies. We show that the stabilization observed at higher frequencies is governed by the spreading and decrease of the coupling potentials at high intensities rather than by a reduction of the wave-function amplitude in the interaction region.
Scrinzi, A., Elander, N., & Piraux, B. (1993). Stabilization of Rydberg Atoms in Superintense Laser Fields. Physical review. A, Atomic, molecular, and optical physics, 48(4), R2527-R2530. https://doi.org/10.1103/PhysRevA.48.R2527 (Original work published 1993)