The GRENOUILLE traces of FLAME Probe line pulses (60 mJ, 10mJ after compression, 70 fs, 1 cm FWHM, 10 Hz) were acquired in the FLAME Front End Area (FFEA) at the Laboratori Nazionali di Frascati (LNF), Instituto Nazionale di Fisica Nucleare (INFN). The complete characterization of the laser pulse parameters was made using a new algorithm: GRenouille/FrOG (GROG). A characterization with a commercial algorithm, QUICKFrog, was also made. The temporal and spectral parameters came out to be in great agreement for the two kinds of algorithms. In this experimental campaign the Probe line of FLAME has been completely characterized and it has been showed how GROG, the developed algorithm, works as well as QuickFrog algorithm with this type of pulse class.
Galletti, M. (2016). An ultrashort-pulse reconstruction software: GROG, applied to the FLAME laser system. IL NUOVO CIMENTO C, 39(2) [10.1393/ncc/i2016-16292-y].
An ultrashort-pulse reconstruction software: GROG, applied to the FLAME laser system
Galletti, M
2016-01-01
Abstract
The GRENOUILLE traces of FLAME Probe line pulses (60 mJ, 10mJ after compression, 70 fs, 1 cm FWHM, 10 Hz) were acquired in the FLAME Front End Area (FFEA) at the Laboratori Nazionali di Frascati (LNF), Instituto Nazionale di Fisica Nucleare (INFN). The complete characterization of the laser pulse parameters was made using a new algorithm: GRenouille/FrOG (GROG). A characterization with a commercial algorithm, QUICKFrog, was also made. The temporal and spectral parameters came out to be in great agreement for the two kinds of algorithms. In this experimental campaign the Probe line of FLAME has been completely characterized and it has been showed how GROG, the developed algorithm, works as well as QuickFrog algorithm with this type of pulse class.File | Dimensione | Formato | |
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