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    Complex Dynamics of Correlated Electrons in Molecular Double Ionization by an Ultrashort Intense Laser Pulse

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    With a semiclassical quasi-static model we achieve an insight into the complex dynamics of two correlated electrons under the combined influence of a two-center Coulomb potential and an intense laser field. The model calculation is able to reproduce experimental data of nitrogen molecules for a wide range of laser intensities from tunnelling to over-the-barrier regime, and predicts a significant alignment effect on the ratio of double over single ion yield. The classical trajectory analysis allows to unveil sub-cycle molecular double ionization dynamics.Comment: 5 pages, 5 figures. to appear in Phys. Rev. Lett.(2007

    Certain comments on the application of the method of averaging to the study of the rotational motions of a triaxial rigid body

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    Averaging technique applied to variational equations describing rotational motions of rigid triaxial body in elliptical orbi

    Further comments on the application of the method of averaging to the study of the rotational motions of a triaxial rigid body, part 2

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    The second and final step in the development of first-order secular solutions to rotational motions of triaxial bodies is presented
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