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Gamma-ray source through inverse Compton scattering in a thermal hohlraum

Author:
Ping, Y. L.  He, X. T.  Zhang, H.  Qiao, B.  Cai, H. B.  Chen, S. Y.  


Journal:
LASER AND PARTICLE BEAMS


Issue Date:
2013


Abstract(summary):

A new inverse Compton scattering scheme for production of high-energy Gamma-ray sources is proposed in which a Giga-electronvolt (GeV) electron beam is injected into a thermal hohlraum. It is found that by increasing the hohlraum background temperature, the scattered photons experience kinematic pileup, resulting in more monochromatic spectrum and smaller scattering angle. When a relativistic electron beam with energy 1 GeV and charge 10nC is injected into a 0.5 keV hohlraum, 80% of the scattered photons have energy above 0.5 GeV.


Page:
607---611


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