The SPARC_LAB Thomson source is presently under commissioning at LNF. An electron beam of energy between 30-150 MeV collides head-on with the laser pulse provided by the Ti:Sapphire laser FLAME, characterized in this phase by a length of 6 ps FWHM and by an energy ranging between 1 and 5 J. The key features of this system are the wide range of tunability of the X- rays yield energy, i.e. 20-500 keV, and the availability of a coupled quadrupole and solenoid focusing system, allowing to reach an electron beam size of 10-20 microns at the interaction point. The experimental results obtained in the February 2014 shifts are presented.

Vaccarezza, C., Alesini, D., Anania, M.P., Bellaveglia, M., Chiadroni, E., Di Giovenale, D., et al. (2014). The SPARC-LAB Thomson source commissioning. In IPAC 2014: Proceedings of the 5th International Particle Accelerator Conference (pp.267-270). Joint Accelerator Conferences Website (JACoW).

The SPARC-LAB Thomson source commissioning

DELOGU, PASQUALE;
2014-01-01

Abstract

The SPARC_LAB Thomson source is presently under commissioning at LNF. An electron beam of energy between 30-150 MeV collides head-on with the laser pulse provided by the Ti:Sapphire laser FLAME, characterized in this phase by a length of 6 ps FWHM and by an energy ranging between 1 and 5 J. The key features of this system are the wide range of tunability of the X- rays yield energy, i.e. 20-500 keV, and the availability of a coupled quadrupole and solenoid focusing system, allowing to reach an electron beam size of 10-20 microns at the interaction point. The experimental results obtained in the February 2014 shifts are presented.
2014
9783954501328
Vaccarezza, C., Alesini, D., Anania, M.P., Bellaveglia, M., Chiadroni, E., Di Giovenale, D., et al. (2014). The SPARC-LAB Thomson source commissioning. In IPAC 2014: Proceedings of the 5th International Particle Accelerator Conference (pp.267-270). Joint Accelerator Conferences Website (JACoW).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/1006389
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