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Attosecond Control of Restoration of Electronic Structure Symmetry.

08:00 EDT 26th October 2018 | BioPortfolio

Summary of "Attosecond Control of Restoration of Electronic Structure Symmetry."

Laser pulses can break the electronic structure symmetry of atoms and molecules by preparing a superposition of states with different irreducible representations. Here, we discover the reverse process, symmetry restoration, by means of two circularly polarized laser pulses. The laser pulse for symmetry restoration is designed as a copy of the pulse for symmetry breaking. Symmetry restoration is achieved if the time delay is chosen such that the superposed states have the same phases at the temporal center. This condition must be satisfied with a precision of a few attoseconds. Numerical simulations are presented for the C_{6}H_{6} molecule and ^{87}Rb atom. The experimental feasibility of symmetry restoration is demonstrated by means of high-contrast time-dependent Ramsey interferometry of the ^{87}Rb atom.

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This article was published in the following journal.

Name: Physical review letters
ISSN: 1079-7114
Pages: 173201

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