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Quantum entanglement in strong-field ionization

Majorosi, Szilárd and Benedict, Mihály and Czirják, Attila (2017) Quantum entanglement in strong-field ionization. PHYSICAL REVIEW A, 96 (4). ISSN 2469-9926

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Abstract

We investigate the time evolution of quantum entanglement between an electron, liberated by a strong few-cycle laser pulse, and its parent ion core. Since the standard procedure is numerically prohibitive in this case, we propose a method to quantify the quantum correlation in such a system: we use the reduced density matrices of the directional subspaces along the polarization of the laser pulse and along the transverse directions as building blocks for an approximate entanglement entropy. We present our results, based on accurate numerical simulations, in terms of several of these entropies, for selected values of the peak electric-field strength and the carrier-envelope phase difference of the laser pulse. The time evolution of the mutual entropy of the electron and the ion-core motion along the direction of the laser polarization is similar to our earlier results based on a simple one-dimensional model. However, taking into account also the dynamics perpendicular to the laser polarization reveals a surprisingly different entanglement dynamics above the laser intensity range corresponding to pure tunneling: the quantum entanglement decreases with time in the over-the-barrier ionization regime.

Item Type: Article
Uncontrolled Keywords: ENTROPY; APPROXIMATION; TIME; RECOIL-ION; HARMONIC-GENERATION; WAVE-PACKETS; RARE-GASES; MULTIPHOTON IONIZATION; MOMENTUM SPECTROSCOPY; SCHMIDT DECOMPOSITION;
Subjects: Q Science / természettudomány > Q1 Science (General) / természettudomány általában
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 08 Jun 2023 08:44
Last Modified: 08 Jun 2023 08:44
URI: http://real.mtak.hu/id/eprint/166856

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