Paper
7 May 2009 Linear and non-linear Thomson-scattering x-ray sources driven by conventionally and laser plasma accelerated electrons
A. Debus, S. Bock, M. Bussmann, T. E. Cowan, A. Jochmann, T. Kluge, S. D. Kraft, R. Sauerbrey, K. Zeil, U. Schramm
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Abstract
Compact tuneable sources of ultrashort hard x-ray pulses can be realized by Thomson scattering, taking advantage of the comparatively short wavelength of a scattered laser pulse with respect to the period length of conventional undulators. Here, we present a detailed analysis and optimization of the efficiency of linear and non-linear Thomson scattering when the process is driven with relativistic laser pulses and when the conventional accelerator is replaced by a laser-plasma wakefield accelerator.
© (2009) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
A. Debus, S. Bock, M. Bussmann, T. E. Cowan, A. Jochmann, T. Kluge, S. D. Kraft, R. Sauerbrey, K. Zeil, and U. Schramm "Linear and non-linear Thomson-scattering x-ray sources driven by conventionally and laser plasma accelerated electrons", Proc. SPIE 7359, Harnessing Relativistic Plasma Waves as Novel Radiation Sources from Terahertz to X-Rays and Beyond, 735908 (7 May 2009); https://doi.org/10.1117/12.820741
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CITATIONS
Cited by 18 scholarly publications and 2 patents.
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KEYWORDS
Electrons

Laser scattering

Pulsed laser operation

Scattering

Thomson scattering

Plasma

Light scattering

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