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Semiclassical two-step model for ionization by a strong laser pulse: further developments and applications

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

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  • Nikolai Ivanovich Shvetsov-Shilovskiy

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OriginalspracheEnglisch
Aufsatznummer130
Seitenumfang22
FachzeitschriftEuropean Physical Journal D
Jahrgang75
Ausgabenummer4
PublikationsstatusVeröffentlicht - 19 Apr. 2021

Abstract

We review the semiclassical two-step model for strong-field ionization. The semiclassical two-step model describes quantum interference and accounts for the ionic potential beyond the semiclassical perturbation theory. We discuss formulation and implementation of this model, its further developments, as well as some of the applications. The reviewed applications of the model include strong-field holography with photoelectrons, multielectron polarization effects in ionization by an intense laser pulse, and strong-field ionization of the hydrogen molecule.

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Semiclassical two-step model for ionization by a strong laser pulse: further developments and applications. / Shvetsov-Shilovskiy, Nikolai Ivanovich.
in: European Physical Journal D, Jahrgang 75, Nr. 4, 130, 19.04.2021.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Shvetsov-Shilovskiy NI. Semiclassical two-step model for ionization by a strong laser pulse: further developments and applications. European Physical Journal D. 2021 Apr 19;75(4):130. doi: 10.48550/arXiv.2102.00503, 10.1140/epjd/s10053-021-00134-3
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abstract = "We review the semiclassical two-step model for strong-field ionization. The semiclassical two-step model describes quantum interference and accounts for the ionic potential beyond the semiclassical perturbation theory. We discuss formulation and implementation of this model, its further developments, as well as some of the applications. The reviewed applications of the model include strong-field holography with photoelectrons, multielectron polarization effects in ionization by an intense laser pulse, and strong-field ionization of the hydrogen molecule.",
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