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Linear and nonlinear Thomson scattering from the PHOENIX xray source

Krämer, J.; Jochmann, A.; Couperus, J. P.; Köhler, A.; Zarini, O.; Pausch, R.; Debus, A.; Wagner, A.; Lehnert, U.; Budde, M.; Bødker, F.; Kristensen, J.; Michel, P.; Irman, A.; Schramm, U.

Development of advanced x-ray sources based on the laser-Thomson scattering mechanism is becoming important pushed by a strong demand for ultrashort hard x-ray pulses. These can serve as a tool for structural analysis of complex systems with unprecedented temporal and spatial resolution. We explored the spectral shape and bandwidth of the x-ray beam as a result from the interaction of electron and laser beam. The intensity dependence of the backscattered photon spectrum is investigated and compared to full-physics 3D ab-initio simulations. The realization of a non-linear Thomson scattering source qualifies as an initial step towards strong field physics research.

Related publications

  • Lecture (Conference)
    International Conference on Extreme Light (ICEL), 23.-27.11.2015, Bucharest, Romania
  • Lecture (Conference)
    2nd European Advanced Accelerator Concepts Workshop, 13.-19.09.2015, La Biodola,Isola d'Elba, Italia

Permalink: https://www.hzdr.de/publications/Publ-23181
Publ.-Id: 23181