Symmetry breaking and strong persistent plasma currents via resonant destabilization of atoms

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Date
2017
Volume
2423
Issue
Journal
Series Titel
Book Title
Publisher
Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik
Abstract

The ionization rate of an atom in a strong optical field can be resonantly enhanced by the presence of long-living atomic levels (so called Freeman resonances). This process is most prominent in the multiphoton ionization regime meaning that ionization event takes many optical cycles. Nevertheless, here we show that these resonances can lead to fast subcycle-scale plasma buildup at the resonant values of the intensity in the pump pulse. The fast buildup can break the cycletocycle symmetry of the ionization process, resulting in generation of persistent macroscopic plasma currents which remain after the end of the pulse. This, in turn, gives rise to a broadband radiation of unusual spectral structure forming a comb from terahertz (THz) to visible. This radiation contains fingerprints of the attosecond electronic dynamics in Rydberg states during ionization.

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Keywords
THz light generation, photoionization, multiphoton dynamics, Floquet theorem
Citation
Brée, C., Hofmann, M., Babushkin, I., Demircan, A., Morgner, U., Kosareva, O. G., et al. (2017). Symmetry breaking and strong persistent plasma currents via resonant destabilization of atoms (Vol. 2423). Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik. https://doi.org//10.20347/WIAS.PREPRINT.2423
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