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High Energy Density Physics with Intense Ion and Laser Beams:
Annual Report 2005 (GSI
Report 2006-2) |
Cover illustration:
The cover picture illustrates the principle of X-ray spectroscopy of heavy ions interacting with matter and shows
results in the form of a characteristic spectrum.
In the upper part of the picture the principle of X-ray spectroscopy for investigation of the stopping process of
heavy ions in matter is shown. This approach is based on the analysis of the characteristic radiation of swift
heavy ions induced in collision with target atoms. The spectra are registered with high spectral and spatial
resolution along the ion beam stopping path (see also this report pages 1 and 2).
In the lower part of the picture the characteristic radiation of Ca-ions slowing down in porous SiO2 media is
shown. The relative line intensities in the spectrum reflect the ion charge state distribution. The velocities of
ions moving with one tenth of the speed of light can be analyzed using the relativistic Doppler Effect.
The Doppler line shift is decreasing continuously with the ion penetration depth in the target material.
The lines in the spectrum are tilted demonstrating the ion deceleration process. This feature was used to measure
the velocity dynamics of Mg-, Ar-, Ti- and Ca-projectiles over 80% of the ion stopping path.
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EP The Plasma Physics Experimental Program
PH The PHELIX Laser Program
AC Beam and Accelerator Physics
TT Target Theory
AX Appendices
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| EP-01 |
Calcium projectile ion radiation dynamics in the gaseous target. |
1 |
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S. Korostiy, O. Rosmej, A. Blazevic, D. Varentsov, A. Fertman, V. Turtikov, V.P. Efremov, J. Rzadkiewicz, A. Gójska, D.H.H. Hoffmann
| EP-02 |
Charge state and energy loss of heavy ion beam interacting with porous and solid matter. |
2 |
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A. Fertman, T. Mutin, V. Turtikov, A. Golubev, O. Rosmej, S. Korostiy, A. Blazevic, S. Pikuz, V.P. Efremov, D.H.H. Hoffmann
| EP-03 |
Progress on HEDP/WDM experiments at GSI |
3 |
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D. Varentsov, D. Fernengel, A. Hug, J. Menzel, P. Ni, S. Udrea, D.H.H. Hoffmann, P. Spiller, N.A. Tahir, H. Wahl, V.E. Fortov, V.K. Gryaznov, M. Kulish, I.V. Lomonosov, V. Mintsev, D. Nikolaev, N. Shilkin, A. Shutov, V.Ya. Ternovoi, A. Fertman, A. Golubev, B. Sharkov, V. Turtikov
| EP-04 |
Expansion of evaporating lead after ion-beam and shock-wave loading |
4 |
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V.Ya. Ternovoi, V.E. Fortov, V.K. Gryaznov, V. Kim, M. Kulish, I.V. Lomonosov, V. Mintsev, D. Nikolaev, N. Shilkin, A. Shutov, D. Fernengel, D.H.H. Hoffmann, A. Hug, J. Menzel, P. Ni, S. Udrea, D. Varentsov, P. Spiller, N.A. Tahir, H. Wahl, A. Fertman, A. Golubev, B. Sharkov, V. Turtikov
| EP-05 |
Energy Loss of C-ions in Ar-plasma and -gas in the Gap-target Configuration |
6 |
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K. Weyrich, H. Wahl, D.H.H. Hoffmann, A. Golubev, A. Kantsyrev, B. Sharkov, M. Kulish, S. Dudin, V. Mintsev
| EP-06 |
Hydrodynamics of a gaseous medium heated by ion beams |
7 |
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V. Turtikov, A. Fertman, B. Sharkov, V.P. Efremov, O. Rosmej, D. Varentsov, S. Korostiy, D.H.H. Hoffmann
| EP-07 |
Influence of transverse laser beam profiles on proton acceleration |
8 |
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M. Schollmeier, A. Blazevic, E. Brambrink, M. Hegelich, J.C. Fernandez, K. Flippo, J. Schreiber, M. Roth
| EP-08 |
Tailoring the ion front of short pulse laser accelerated ion beamsTailoring the ion front of short pulse laser accelerated ion beams |
9 |
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E. Brambrink, P. Audebert, A. Blazevic, J. Fuchs, M. Hegelich, S. Karsch, T. Schlegel, J. Schreiber, M. Roth
| EP-09 |
Influence of f number variation on the properties of laser produced plasmas |
10 |
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G. Rodríguez Prieto, A.Ya. Faenov, T. Pikuz, G. Schaumann, S. Korostiy, O. Rosmej, A. Blazevic, T. Heßling
| EP-10 |
Heavy Ion Beam Pumped Excimerlaser |
11 |
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A. Ulrich, A. Adonin, J. Jacoby, V. Turtikov, D. Fernengel, A. Fertman, A. Golubev, D.H.H. Hoffmann, A. Hug, R. Krücken, M. Kulish, J. Menzel, P. Ni, B. Sharkov, S. Udrea, D. Varentsov, H. Wahl, J. Wieser
| EP-11 |
Displacement interferometer technique for plasma pressure diagnostic |
12 |
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M. Kulish, D. Varentsov, V.Ya. Ternovoi, D. Fernengel, A. Hug, J. Menzel, P. Ni, S. Udrea, D.H.H. Hoffmann, N.A. Tahir, H. Wahl, V.E. Fortov, V.K. Gryaznov, I.V. Lomonosov, V. Mintsev, D. Nikolaev, N. Shilkin, A. Shutov
| EP-12 |
Investigation of a new gas discharge switch |
13 |
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C. Teske, M. Iberler, J. Jacoby, T. Rienecker
| EP-13 |
Investigation of a RF plasma in an external magnetic field |
14 |
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C. Teske, M. Iberler, R. Berezov, J. Jacoby, J. Schunk, J. Wiechula
| EP-14 |
Laser-Plasma Calorimeter |
15 |
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A.V. Bessarab, N.V. Zidkov, A.V. Kunin
| EP-15 |
X-ray Calorimeter |
16 |
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A.V. Bessarab, A.V. Kunin, N.V. Zidkov
| EP-16 |
CAST - Probing Axions from the Core of the Sun |
17 |
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M. Kuster, S. Gerhard, D.H.H. Hoffmann, G. Hoffmeister, D. Weber, K. Zioutas
| EP-17 |
Investigation of backscattered electrons for a spin detection with high efficiency |
18 |
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R. Berezov, S. Böttger, J. Jacoby
| EP-18 |
Charge Changing Collisions between Multiply Charged Xe and Pb Ions |
19 |
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H. Bräuning, A. Diehl, R. Traßl, E. Salzborn | | | | | | | | | | | | | | | | | |
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| PH-01 |
PHELIX Progress Report |
21 |
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V. Bagnoud, A. Blazevic, R. Bock, H. Brand, C. Bruske, J. Caird, U. Eisenbarth, J. Fils, R. Fuchs, S. Götte, M. Hagemann, T. Hahn, H.-M. Heuck, C. Hildebrandt, D.H.H. Hoffmann, D. Javorkova, H.-J. Kluge, F. Knobloch, T. Kühl, S. Kunzer, M. Kreutz, R. Lotz, T. Merz, P. Neumayer, E. Onkels, D. Reemts, M. Roth, H. Schmidt, C. Spielmann, R. Stenner, A. Tauschwitz, R. Thiel, U. Thiemer, D. Ursescu, K. Witte, U. Wittrock, B. Zielbauer
| PH-02 |
Grazing Incidence Pumped Zr X-Ray Laser at PHELIX |
24 |
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| AC-01 |
Non-intersecting beam diagnostics - Beam Induced Fluorescence Monitor |
27 |
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P. Forck, F. Becker, C. Andre, C. Dorn, H. Graf, T. Hoffmann, F. Peldzinski, A. Peters, H. Reeg
| AC-02 |
Beam Loss Studies for the AGS Booster Operation with Intermediate Charge State Heavy Ions |
29 |
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C. Omet, W. Fischer, A. Smolyakov, P. Spiller
| AC-03 |
Beam Dynamics Simulation During Longitudinal Bunch Compression with Focusing Field Errors |
30 |
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T. Kikuchi, S. Kawata, M. Nakajima, K. Horioka
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| TT-01 |
Part I: Hydrodynamic Stability of the LAPLAS Target Using an Annular Focal Spot at the Future FAIR Facility |
31 |
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N.A. Tahir, D.H.H. Hoffmann, A.R. Piriz, G. Wouchuk, A. Shutov, I.V. Lomonosov, V.E. Fortov, C. Deutsch
| TT-02 |
Part II: Hydrodynamic Stability Analysis of the LAPLAS Tahgrt Using a Circular Focal Spot |
34 |
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N.A. Tahir, D.H.H. Hoffmann, A.R. Piriz, G. Wouchuk, A. Shutov, I.V. Lomonosov, V.E. Fortov, C. Deutsch
| TT-03 |
Simulations of HIHEX Experiments at FAIR Using Porous Material |
36 |
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N.A. Tahir, D.H.H. Hoffmann, A. Shutov, I.V. Lomonosov, V.E. Fortov, C. Deutsch
| TT-04 |
Liquid Jet Target for Super-FRS Fast Extraction Scheme: Comparison Between 2D and 3D Simulations |
38 |
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N.A. Tahir, A. Shutov, V. Kim, I.V. Lomonosov, K. Sümmerer, A. Kelic, B. Achenbach, H. Weick, M. Winkler, H. Geissel, D.H.H. Hoffmann
| TT-05 |
The LAPLAS experiment: Rayleigh - taylor instability in elastic solids |
41 |
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A.R. Piriz, J.J. Lopez Cela, O.D. Cortazar, M.C. Serna Moreno, N.A. Tahir, D.H.H. Hoffmann
| TT-06 |
Reflectivity in Dense Xe Plasma |
43 |
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T. Raitza, H. Reinholz, G. Röpke
| TT-07 |
Equation of state of dense hydrogen and phase transitions |
44 |
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B. Holst, N. Nettelmann, R. Redmer
| TT-08 |
Temperature Measurements of Dense Plasmas by Detailed Balance |
45 |
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A. Höll, R. Redmer, G. Röpke, H. Reinholz, R. Thiele, E. Förster, L. Cao, T. Tschentscher, S. Toleikis, S.H. Glenzer
| TT-09 |
Ions in solid-density plasmas |
46 |
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D.V. Fisher
| TT-10 |
Molecular dynamics simulations of plasmas in electromagnetic fields: collisional absorption |
47 |
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P. Hilse, Th. Bornath, M. Schlanges
| TT-11 |
Quantum molecular dynamics simulations for expanded fluid alkali metals |
48 |
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A. Kietzmann, R. Redmer
| TT-12 |
Contribution to the HEDIM-Report |
49 |
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B. Rethfeld
| TT-13 |
Bremsstrahlung vs. Thomson scattering in VUV-FEL plasma experiments |
52 |
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C. Fortmann, R. Redmer, H. Reinholz, G. Röpke, W. Rozmus, A. Wierling
| TT-14 |
Simulations of Damage to Carbon Collimators Caused Due to Full Impact of LHC Beam |
53 |
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N.A. Tahir, R. Schmidt, Y. Kadi, A. Shutov, A.R. Piriz, D.H.H. Hoffmann
| TT-15 |
Energy Transfer Rates in Degenerate Two-Temperature Plasmas |
55 |
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D.O. Gericke
| TT-16 |
Microfield distribution in an ion-electron two-component plasma |
56 |
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GSI
Darmstadt, 2006-06-28, K.Weyrich gsi.de
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