The generation of fast particles in plasmas created by laser pulses with different wavelengths

被引:0
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作者
F. B. Rosmej
D. H. H. Hoffmann
W. Süß
A. E. Stepanov
Yu. A. Satov
Yu. B. Smakovskii
V. K. Roerich
S. V. Khomenko
K. N. Makarov
A. N. Starostin
A. Ya. Faenov
I. Yu. Skobelev
A. I. Magunov
M. Geißel
P. Pirzadeh
W. Seelig
T. A. Pikuz
R. Bock
T. Letardi
F. Flora
S. Bollanti
P. Di Lazzaro
A. Reale
A. Scafati
G. Tomassetti
T. Auguste
P. d’ Oliveira
S. Hulin
P. Monot
B. Yu. Sharkov
机构
[1] Technische Universität Darmstadt,Institut für Kernphysik
[2] Troitsk Institute of Innovative and Thermonuclear Research (TRINITI),Institut für Angewandte Physik
[3] Multicharged Ions Spectra Data Center of VNIIFTRI,Dipartimento Innovazione
[4] Technische Universität Darmstadt,Dipartimento di Fisica e INFM, INFN g.e. LNGS
[5] Bauman Moscow State Technical University,undefined
[6] Gesellschaft für Schwerionenforschung,undefined
[7] Plasmaphysics,undefined
[8] CR ENEA,undefined
[9] Università de L’Aquila,undefined
[10] Centre d’Etudes de Saclay,undefined
[11] DSM/DRECAM/SPAM,undefined
[12] Institute of Theoretical and Experimental Physics,undefined
关键词
Laser Intensity; Fast Particle; Spectral Simulation; Bulk Electron; Satellite Spectrum;
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学科分类号
摘要
By means of spatially resolved high-resolution X-ray spectroscopy, we have investigated the generation of fast ions at various laser installations with different flux densities and laser wavelengths. It is demonstrated that the fast ion generation in laser-produced plasma can be achieved for a very low level of the averaged laser intensity on the target. The time-of-flight mass spectrometry ion diagnostics and X-ray spectrographs give very close results for the energy distribution of the thermal ion component. For higher energies, however, we found significant differences: the spatially resolved high-resolution spectrographs expose the presence of suprathermal ions, while the time-of-flight method does not. Suprathermal ion energies Eion plotted as a function of the qλ2 parameter show a large scatter far above the experimental errors. The cause of these large scatters is attributed to a strong nonuniformity of the laser intensity distribution in the focal spot. The analysis by means of hydrodynamics and spectral simulations show that the X-ray emission spectrum is a complex convolution from different parts of the plasma with strongly different electron density and temperature. It is shown that the highly resolved Li-like satellite spectrum near Heαcontains significant distortions even for very low hot electron fractions. Non-Maxwellian spectroscopy allows determination of both the hot electron fraction and the bulk electron temperature.
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页码:60 / 72
页数:12
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