Data di Pubblicazione:
2006
Abstract:
We use optical interferometry to investigate ultrafast ionization induced by an intense, ultrashort laser pulse
propagating in a helium gas. Besides standard phase shift information, our interferograms show a localized
region of fringe visibility depletion FVD that moves along the laser propagation axis at luminal velocity. We
find that such a loss of visibility can be quantitatively explained by the ultrafast change of refractive index due
to the field ionization of the gas in the laser pulse width. We demonstrate that by combining the post facto
phase shift distribution with the probe pulse transit effect in the ionizing region, the analysis of the observed
FVD yields significant information on the ultrafast dynamics of propagation of the ionization front in the gas.
Tipologia CRIS:
01.01 Articolo in rivista
Elenco autori:
Giulietti, Danilo; Gizzi, LEONIDA ANTONIO; Giulietti, Antonio; Galimberti, Marco
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