A compact synchrotron radiation source driven by a laser-plasma wakefield accelerator
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Sebastian M. Pfotenhauer | Erich G. Rohwer | Heinrich Schwoerer | J. G. Gallacher | Dino A. Jaroszynski | Alexander Debus | Enrico Brunetti | S. M. Wiggins | Hans-Peter Schlenvoigt | R. P. Shanks | D. Jaroszynski | E. Rohwer | H. Schwoerer | S. Pfotenhauer | O. Jäckel | A. Debus | Oliver Jäckel | H. Schlenvoigt | K. Haupt | F. Budde | J. Gallacher | K. Haupt | F. Budde | E. Brunetti | R. Shanks | S. Wiggins
[1] A. Pukhov,et al. Observation of fine structures in laser-driven electron beams using coherent transition radiation. , 2007, Physical review letters.
[2] A. Rousse,et al. Imaging Electron Trajectories in Laser Wakefield Cavity using betatron X-Ray Radiation , 2006, 2007 Conference on Lasers and Electro-Optics (CLEO).
[3] Y. Glinec,et al. Controlled injection and acceleration of electrons in plasma wakefields by colliding laser pulses , 2006, Nature.
[4] M. Mostafavi,et al. Absolute calibration for a broad range single shot electron spectrometer , 2006 .
[5] W. H. Benner,et al. Femtosecond diffractive imaging with a soft-X-ray free-electron laser , 2006, physics/0610044.
[6] K. Nakamura,et al. GeV electron beams from a centimetre-scale accelerator , 2006 .
[7] D. Jaroszynski,et al. Generation of quasimonoenergetic electron bunches with 80-fs laser pulses. , 2006, Physical review letters.
[8] R Issac,et al. Radiation sources based on laser–plasma interactions , 2006, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[9] P. Nicolosi,et al. First operation of a free-electron laser generating GW power radiation at 32 nm wavelength , 2006 .
[10] K. Flippo,et al. Laser acceleration of quasi-monoenergetic MeV ion beams , 2006, Nature.
[11] K.-U. Amthor,et al. Laser-plasma acceleration of quasi-monoenergetic protons from microstructured targets , 2006, Nature.
[12] H Schwoerer,et al. Thomson-backscattered x rays from laser-accelerated electrons. , 2006, Physical review letters.
[13] C. Geddes,et al. Temporal characterization of femtosecond laser-plasma-accelerated electron bunches using terahertz radiation. , 2005, Physical review letters.
[14] E. Weckert,et al. Review of third and next generation synchrotron light sources , 2005 .
[15] Teruyoshi Takahashi,et al. Calibration of imaging plate for high energy electron spectrometer , 2005 .
[16] A. E. Dangor,et al. Monoenergetic beams of relativistic electrons from intense laser–plasma interactions , 2004, Nature.
[17] Y. Glinec,et al. A laser–plasma accelerator producing monoenergetic electron beams , 2004, Nature.
[18] Antoine Rousse,et al. Production of a keV x-ray beam from synchrotron radiation in relativistic laser-plasma interaction. , 2004, Physical review letters.
[19] J. Cary,et al. High-quality electron beams from a laser wakefield accelerator using plasma-channel guiding , 2004, Nature.
[20] M. Pittman,et al. Design and characterization of a near-diffraction-limited femtosecond 100-TW 10-Hz high-intensity laser system , 2002 .
[21] J. Meyer-ter-Vehn,et al. Laser wake field acceleration: the highly non-linear broken-wave regime , 2002 .
[22] H. Kitamura,et al. SPECTRA: a synchrotron radiation calculation code. , 2001, Journal of synchrotron radiation.
[23] Piovella. Transient regime and superradiance in a short-pulse free-electron-laser oscillator. , 1997, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[24] G. Mourou,et al. 100-fs pulse generation and amplification in Ti:Al 2 O 3 , 1991 .
[25] T. Tajima,et al. Laser Electron Accelerator , 1979 .
[26] D. A. Dunnett. Classical Electrodynamics , 2020, Nature.