Zobrazeno 1 - 10
of 16
pro vyhledávání: '"M C Kaluza"'
Autor:
B Aurand, S Kuschel, O Jäckel, C Rödel, H Y Zhao, S Herzer, A E Paz, J Bierbach, J Polz, B Elkin, G G Paulus, A Karmakar, P Gibbon, T Kuehl, M C Kaluza
Publikováno v:
New Journal of Physics, Vol 15, Iss 3, p 033031 (2013)
Experimental results on the acceleration of protons and carbon ions from ultra-thin polymer foils at intensities of up to 6 × 10 ^19 W cm ^−2 are presented revealing quasi-monoenergetic spectral characteristics for different ion species at the sam
Externí odkaz:
https://doaj.org/article/3c48852b3e0d40bdae65b15bc9204222
Publikováno v:
New Journal of Physics, Vol 14, Iss 9, p 093018 (2012)
We show experimentally that extreme ultraviolet radiation is produced when a laser pulse is Thomson backscattered from sheets of relativistic electrons that are formed at the rear surface of a foil irradiated on its front side with a high-intensity l
Externí odkaz:
https://doaj.org/article/a20513b141144cf58223e9ac9584e897
Publikováno v:
Physical review research 5(1), L012023 (2023). doi:10.1103/PhysRevResearch.5.L012023
Physical review research 5(1), L012023 (2023). doi:10.1103/PhysRevResearch.5.L012023
Published by APS, College Park, MD
Published by APS, College Park, MD
Autor:
M. B. Schwab, E. Siminos, T. Heinemann, D. Ullmann, F. Karbstein, S. Kuschel, A. Sävert, M. Yeung, D. Hollatz, A. Seidel, J. Cole, S. P. D. Mangles, B. Hidding, M. Zepf, S. Skupin, M. C. Kaluza
Publikováno v:
Physical Review Accelerators and Beams, Vol 23, Iss 3, p 032801 (2020)
We present experimental evidence of relativistic electron-cyclotron resonances (RECRs) in the vicinity of the relativistically intense pump laser of a laser wakefield accelerator (LWFA). The effects of the RECRs are visualized by imaging the driven p
Externí odkaz:
https://doaj.org/article/e439cde807aa48208d24fe3abfd761e6
Autor:
S. Keppler, N. Elkina, G. A. Becker, J. Hein, M. Hornung, M. Mäusezahl, C. Rödel, I. Tamer, M. Zepf, M. C. Kaluza
Publikováno v:
Physical Review Research 4(2022), 013065
Physical review research 4(1), 013065 (2022). doi:10.1103/PhysRevResearch.4.013065
Physical review research 4(1), 013065 (2022). doi:10.1103/PhysRevResearch.4.013065
Physical review research 4(1), 013065 (2022). doi:10.1103/PhysRevResearch.4.013065
Published by APS, College Park, MD
Published by APS, College Park, MD
Autor:
S. Kuschel, D. Hollatz, T. Heinemann, O. Karger, M. B. Schwab, D. Ullmann, A. Knetsch, A. Seidel, C. Rödel, M. Yeung, M. Leier, A. Blinne, H. Ding, T. Kurz, D. J. Corvan, A. Sävert, S. Karsch, M. C. Kaluza, B. Hidding, M. Zepf
Publikováno v:
Physical Review Accelerators and Beams, Vol 19, Iss 7, p 071301 (2016)
We report on the first demonstration of passive all-optical plasma lensing using a two-stage setup. An intense femtosecond laser accelerates electrons in a laser wakefield accelerator (LWFA) to 100 MeV over millimeter length scales. By adding a secon
Externí odkaz:
https://doaj.org/article/afb83c7d7fd8413ab3dce8625d9f8b29
Autor:
V. Bagnoud, J. Fils, J. Hein, M. C. Kaluza, G. G. Paulus, Th. Stöhlker, M. Wolf, Dan Dumitras
Publikováno v:
AIP Conference Proceedings.
In this paper, a new system for improvement of the pulse contrast in CPA laser systems by use of an ultrafast OPA is reviewed together with a scheme to create sub‐picosecond synchronized OPA pump pulses. The scheme is being implemented at the PHELI
Autor:
M. Siebold, M. Hornung, J. Hein, R. Uecker, A. Debus, M. C. Kaluza, Andrea Gamucci, Antonio Giulietti, Luca Labate
Publikováno v:
AIP Conference Proceedings.
We present a terawatt diode‐pumped chirped pulse amplifier using single‐crystalline Yb:CaF2 as the gain medium. A maximum pulse energy of 420 mJ and a repetition rate of 1 Hz was obtained. After recompression, a pulse energy of 197 mJ and a pulse
Autor:
J. Hein, M. Hornung, R. Bödefeld, S. Podleska, A. Sävert, R. Wachs, A. Kessler, S. Keppler, M. Wolf, J. Polz, O. Jäckel, M. Nicolai, M. Schnepp, J. Körner, M. C. Kaluza, G. G. Paulus, Dan Dumitras
Publikováno v:
AIP Conference Proceedings.
At the Institute of Optics and Quantum Electronics, University of Jena, a fully diode pumped ultrahigh peak power laser system—POLARIS—has been realized. Presently, this laser system reaches a peak power of some ten terawatt. The last amplifier,