25–30 Sept 2016
Europe/Rome timezone
deadline for abstracts has expired

Design of a Watt-level gamma-ray source based on high-repetition-rate inverse Compton Scattering

29 Sept 2016, 18:40
1h

Speaker

Philippe Piot (northern Illinois University & Fermilab)

Description

A high-brilliance ($>10^{20}$ phot.s$^{-1}$.mm$^{-2}$.mrd$^{-2}$/0.1%) gamma-ray source experiment is currently in preparation at Fermilab ($E_\gamma\simeq 1.1$~MeV). The source implements a high-repetition-rate inverse Compton scattering by colliding electron bunches formed in a 300-MeV superconducting linac with a high-intensity laser pulse. This contribution describes the design rationale along with technical challenges associated to producing high-repetition-rate collision (e.g. development of a coherent stacking cavity). The expected performances of the gamma-ray source are also presented along with their sensitivity to fluctuations of electron-beam and laser parameters.

Primary author

Philippe Piot (northern Illinois University & Fermilab)

Presentation materials

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