BUNCHES BY USING A QUASI-CONTINUOUS SCHEME IN A LONG BEAM T NSFER LINE
H. Schlarb, R. Brinkmann
Abstract
H. Schlarb, R. Brinkmann
Abstract
Integration of an X-Ray Free Electron Laser facility is planned in the TESLA design for a future e+e- Linear Collider. In the present scheme, the FEL drive beam is transported to a central user facility in a several km long beamline. In this paper we present how the longitudinal wakefield effect for short bunches in combination with a special beamline magnetic lattice can be used to obtain compression down to an rms-bunch length in the range of a few pm. Peak current of more than 50kA would enable the X-Ray FEL facility to generate photon wave lengths in the sub- Angstrom regime.
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Integration of an X-Ray Free Electron Laser facility is planned in the TESLA design for a future e+e- Linear Collider. In the present scheme, the FEL drive beam is transported to a central user facility in a several km long beamline. In this paper we present how the longitudinal wakefield effect for short bunches in combination with a special beamline magnetic lattice can be used to obtain compression down to an rms-bunch length in the range of a few pm. Peak current of more than 50kA would enable the X-Ray FEL facility to generate photon wave lengths in the sub- Angstrom regime.
Key concepts: Beamline, Bunches, Physics, Linear particle accelerator, Optics, Free-electron laser, Beam (structure), Particle accelerator