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Widely tunable two-colour seeded free-electron laser source for resonant-pump resonant-probe magnetic scattering

The advent of free-electron laser (FEL) sources delivering two synchronized pulses of different wavelengths (or colours) has made available a whole range of novel pump–probe experiments. This communication describes a major step forward using a new configuration of the FERMI FEL-seeded source to del...

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Detalles Bibliográficos
Autores principales: Ferrari, Eugenio, Spezzani, Carlo, Fortuna, Franck, Delaunay, Renaud, Vidal, Franck, Nikolov, Ivaylo, Cinquegrana, Paolo, Diviacco, Bruno, Gauthier, David, Penco, Giuseppe, Ribič, Primož Rebernik, Roussel, Eleonore, Trovò, Marco, Moussy, Jean-Baptiste, Pincelli, Tommaso, Lounis, Lounès, Manfredda, Michele, Pedersoli, Emanuele, Capotondi, Flavio, Svetina, Cristian, Mahne, Nicola, Zangrando, Marco, Raimondi, Lorenzo, Demidovich, Alexander, Giannessi, Luca, De Ninno, Giovanni, Danailov, Miltcho Boyanov, Allaria, Enrico, Sacchi, Maurizio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4735510/
https://www.ncbi.nlm.nih.gov/pubmed/26757813
http://dx.doi.org/10.1038/ncomms10343
Descripción
Sumario:The advent of free-electron laser (FEL) sources delivering two synchronized pulses of different wavelengths (or colours) has made available a whole range of novel pump–probe experiments. This communication describes a major step forward using a new configuration of the FERMI FEL-seeded source to deliver two pulses with different wavelengths, each tunable independently over a broad spectral range with adjustable time delay. The FEL scheme makes use of two seed laser beams of different wavelengths and of a split radiator section to generate two extreme ultraviolet pulses from distinct portions of the same electron bunch. The tunability range of this new two-colour source meets the requirements of double-resonant FEL pump/FEL probe time-resolved studies. We demonstrate its performance in a proof-of-principle magnetic scattering experiment in Fe–Ni compounds, by tuning the FEL wavelengths to the Fe and Ni 3p resonances.