In this work we discuss our recent advances in attosecond technology. Isolated attosecond pulses with pulse duration down to 130 as are now routinely generated by using the polarization gating technique, in combination with few-optical-cycle driving pulses with controlled electric field, generated by the hollow-fiber compression method. By using a high-energy infrared parametric source with self-stabilization of the carrier-envelope phase, in combination with a two-color excitation scheme, continuous XUV spectra were generated, showing a spectral extension beyond 200 eV. These results represent a step forward in the extension of attosecond science towards the soft-X rays region.

Towards isolated attosecond pulses by polarization- and two-color-gating

C Vozzi;L Poletto;S Stagira;
2010

Abstract

In this work we discuss our recent advances in attosecond technology. Isolated attosecond pulses with pulse duration down to 130 as are now routinely generated by using the polarization gating technique, in combination with few-optical-cycle driving pulses with controlled electric field, generated by the hollow-fiber compression method. By using a high-energy infrared parametric source with self-stabilization of the carrier-envelope phase, in combination with a two-color excitation scheme, continuous XUV spectra were generated, showing a spectral extension beyond 200 eV. These results represent a step forward in the extension of attosecond science towards the soft-X rays region.
2010
Istituto di fotonica e nanotecnologie - IFN
LIGHT AT EXTREME INTENSITIES: OPPORTUNITIES AND TECHNOLOGICAL ISSUES OF THE EXTREME LIGHT INFRASTRUCTURE
1st International Conference on Light at Extreme Intensities (LEI 2009)
400
407
978-0-7354-0771-8
OCT 16-21, 2009
Brasov, ROMANIA
3
none
C. Vozzi; G. Sansone; L. Poletto; S. De Silvestri; S. Stagira; M. Nisoli
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/80048
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