Design considerations for table-top, laser-based VUV and X-ray free electron lasers

A recent breakthrough in laser-plasma accelerators, based upon ultrashort high-intensity lasers, demonstrated the generation of quasi-monoenergetic GeV-electrons. With future Petawatt lasers ultra-high beam currents of ~100 kA in ~10 fs can be expected, allowing for drastic reduction in the undulato...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2007-02, Vol.86 (3), p.431-435
Hauptverfasser: GRÜNER, F, BECKER, S, SERAFINI, L, VAN DER GEER, B, BACKE, H, LAUTH, W, REICHE, S, SCHRAMM, U, EICHNER, T, FUCHS, M, WEINGARTNER, R, HABS, D, MEYER-TER-VEHN, J, GEISSLER, M, FERRARIO, M
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Sprache:eng
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Zusammenfassung:A recent breakthrough in laser-plasma accelerators, based upon ultrashort high-intensity lasers, demonstrated the generation of quasi-monoenergetic GeV-electrons. With future Petawatt lasers ultra-high beam currents of ~100 kA in ~10 fs can be expected, allowing for drastic reduction in the undulator length of free-electron-lasers (FELs). We present a discussion of the key aspects of a table-top FEL design, including energy loss and chirps induced by space-charge and wakefields. These effects become important for an optimized table-top FEL operation. A first proof-of-principle VUV case is considered as well as a table-top X-ray-FEL which may also open a brilliant light source for new methods in clinical diagnostics.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-006-2565-7