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- W2513873390 endingPage "104002" @default.
- W2513873390 startingPage "104002" @default.
- W2513873390 abstract "Atomic excitation in the tunneling regime of a strong-field laser–matter interaction has been recently observed. It is conveniently explained by the concept of frustrated tunneling ionization (FTI), which naturally evolves from the well-established tunneling picture followed by classical dynamics of the electron in the combined laser field and Coulomb field of the ionic core. Important predictions of the FTI model such as the n distribution of Rydberg states after strong-field excitation and the dependence on the laser polarization have been confirmed in experiments. The model also establishes a sound basis to understand strong-field acceleration of neutral atoms in strong laser fields. The experimental observation has become possible recently and initiated a variety of experiments such as atomic acceleration in an intense standing wave and the survival of Rydberg states in strong laser fields. Furthermore, the experimental investigations on strong-field dissociation of molecules, where neutral excited fragments after the Coulomb explosion of simple molecules have been observed, can be explained. In this review, we introduce the subject and give an overview over relevant experiments supplemented by new results." @default.
- W2513873390 created "2016-09-16" @default.
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- W2513873390 date "2016-09-01" @default.
- W2513873390 modified "2023-10-14" @default.
- W2513873390 title "Atomic excitation and acceleration in strong laser fields" @default.
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- W2513873390 doi "https://doi.org/10.1088/0031-8949/91/10/104002" @default.
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