In this work, the main technological issues to produce an high brightness electron beam for x-ray Free Electron Laser (FEL) application are presented and ana- lyzed. The researches conducted have been done as an R&D activities for the new SPARC photoinjector in Italy. The brightness of an electron bunch means high peak current and low beam's emittance. An UV laser and a photocathode is generally used to produce high density charge in an accelerating structure. To minimize the non-linear space charge forces a temporally square pulse on ps scale is needed. In this thesis we report the experimental results of pulse shaping obtained using an acousto-optic programmable dispersive ¯lter and an high energy Ti:SA laser. Robust photocathodes, such as CVD diamond-based and Mg ¯lms, have been studied. Simulations, characterizations and installation of a magnetic chi- cane compressor is described. The experimental observation of an unprecedented ultra large bandwidth FEL radiation is reported and discussed.
High brightness electron source for coherent radiation production
VICARIO, carlo
2005
Abstract
In this work, the main technological issues to produce an high brightness electron beam for x-ray Free Electron Laser (FEL) application are presented and ana- lyzed. The researches conducted have been done as an R&D activities for the new SPARC photoinjector in Italy. The brightness of an electron bunch means high peak current and low beam's emittance. An UV laser and a photocathode is generally used to produce high density charge in an accelerating structure. To minimize the non-linear space charge forces a temporally square pulse on ps scale is needed. In this thesis we report the experimental results of pulse shaping obtained using an acousto-optic programmable dispersive ¯lter and an high energy Ti:SA laser. Robust photocathodes, such as CVD diamond-based and Mg ¯lms, have been studied. Simulations, characterizations and installation of a magnetic chi- cane compressor is described. The experimental observation of an unprecedented ultra large bandwidth FEL radiation is reported and discussed.File | Dimensione | Formato | |
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https://hdl.handle.net/20.500.14242/86512
URN:NBN:IT:UNIROMA1-86512