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N. L. Manakov

Researcher at Voronezh State University

Publications -  123
Citations -  2631

N. L. Manakov is an academic researcher from Voronezh State University. The author has contributed to research in topics: Electron & Ionization. The author has an hindex of 27, co-authored 122 publications receiving 2408 citations.

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Elliptic and circular dichroism effects in two-photon double ionization of atoms.

TL;DR: In this paper, an ab initio parametrization of the two-photon double ionization amplitude from an ${s}^{2}$ subshell of an atom in a $ √ s$ state is presented and used to predict two light polarization effects on photoelectron angular distributions that do not exist in single-phase double ionisation: (i) elliptic dichroism and (ii) circular dichroisms at equal energy sharing.
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Effects of the atomic structure and interference oscillations in the electron photorecombination spectrum in a strong laser field

TL;DR: In this article, an exact solvable quantum model for electron photorecombination in the presence of a strong low-frequency laser field has been proposed, where the effect of the Ramsauer effect in the cross section for the elastic scattering of slow electrons on Xe+ ions has been predicted.
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Use of Coulomb Green function for the calculation of above-threshold multiphoton transitions

TL;DR: In this article, a Coulomb Green function expansion in Laguere polynomials applicable for the positive energy case is obtained and the cross section of two-photon above-threshold ionization from highly excited hydrogen states is calculated.
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Two-Photon Bremsstrahlung Processes in Atoms: Polarization Effects and Analytic Results for the Coulomb Potential

TL;DR: In this paper, the partial wave analysis of two-photon free-free (bremsstrahlung) electron transition cross sec- tions during scattering by a static potential U(r), as well as by an atom with a nonzero angular momentum, is carried out.
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Analytic description of the high-energy plateau in laser-assisted electron–atom scattering

TL;DR: In this article, a closed-form analytic formula describing plateau features in laser-assisted electron-atom scattering (LAES) was derived quantum mechanically in the low-frequency limit, which confirmed the classical rescattering scenario for LAES and provided an analytic explanation for oscillatory structures in the high-energy part of LAES spectra.