High energy density physics generated by intense heavy ion beams

被引:0
|
作者
D. H. H. Hoffmann
V. E. Fortov
M. Kuster
V. Mintsev
B. Y. Sharkov
N. A. Tahir
S. Udrea
D. Varentsov
K. Weyrich
机构
[1] Institut für Kernphysik,Technische Universität Darmstadt
[2] Russian Academy of Sciences,Institute of Thermophysics of Extreme States, Joint Institute for High Temperatures
[3] Institute of Problems of Chemical Physics,undefined
[4] A.I. Alikhanov Institute of Theoretical and Experimental Physics,undefined
[5] Gesellschaft für Schwerionenforschung,undefined
[6] GSI-Darmstadt,undefined
来源
关键词
High energy density physics; Dense plasma; Energy loss; Inertial fusion; Warm dense matter; Interior of planets and stars;
D O I
暂无
中图分类号
学科分类号
摘要
Intense ion beams from accelerators are now available to generate high energy density matter and to study astrophysical phenomena in the laboratory under controlled and reproducible conditions. A detailed understanding of interaction phenomena of intense ion- and laser radiation with matter is important for a large number of applications in different fields of science, extending from basic research of plasma properties to application in energy science and the investigation of processes occurring in stellar atmospheres or even in the interior of stars and planets. Energy loss processes of heavy ions in plasma and cold matter are important for the generation of high energy density states in general and especially in the hot dense plasma of an inertial fusion target. Of special interest are phase transitions and the associated time scales when matter passes the warm dense matter regime of the phase diagram at high density but relatively low temperature. We present an overview on recent results and developments of beam plasma, and beam matter interaction processes studied with heavy ion beams and laser beams combined with accelerator and nuclear physics technology. A natural example of hot dense plasma is provided by our neighbouring star the sun, and allows a deep insight into the physics of fusion, the properties of matter at high energy density, and is moreover an excellent laboratory for astroparticle physics. As such the sun’s interior plasma can even be used to probe the existence of novel particles and dark matter candidates with a combination of equipment and methods from accelerator technology and high resolution plasma spectroscopy.
引用
收藏
页码:167 / 177
页数:10
相关论文
共 50 条
  • [21] HEDgeHOB: High-energy density matter generated by heavy ion beams at the future facility for antiprotons and ion research
    Tahir, N. A.
    Spiller, P.
    Shutov, A.
    Lomonosov, I. V.
    Gryaznov, V.
    Piriz, A. R.
    Wouchuk, G.
    Deutsch, C.
    Fortov, V. E.
    Hoffmann, D. H. H.
    Schmidt, R.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2007, 577 (1-2): : 238 - 249
  • [22] Studies of equation of state properties of high-energy-density matter generated by intense ion beams at the facility for antiprotons and ion research
    Tahir, N. A.
    Neumayer, P.
    Lomonosov, I. V.
    Shutov, A.
    Bagnoud, V.
    Piriz, A. R.
    Piriz, S. A.
    Deutsch, C.
    PHYSICAL REVIEW E, 2020, 101 (02)
  • [23] Studies on heavy ion fusion and high energy density physics in Japan
    Kawata, S.
    Horioka, K.
    Murakami, M.
    Oguri, Y.
    Hasegawa, J.
    Takayama, K.
    Yoneda, H.
    Miyazawa, K.
    Someya, T.
    Ogoyski, A. T.
    Seino, M.
    Kikuchi, T.
    Kawamura, T.
    Ogawa, M.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2007, 577 (1-2): : 21 - 29
  • [24] ION DIVERGENCE GENERATED BY NONUNIFORM CURRENT-DENSITY OF INTENSE ION-BEAMS
    SLUTZ, SA
    PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1992, 4 (08): : 2645 - 2651
  • [25] High energy density physics studies using intense particle beams at the FAIR facility at Darmstadt
    Tahir, N. A.
    Shutov, A.
    Piriz, A. R.
    Deutsch, C.
    Stoehlker, Th
    IFSA 2011 - SEVENTH INTERNATIONAL CONFERENCE ON INERTIAL FUSION SCIENCES AND APPLICATIONS, 2013, 59
  • [26] High Energy Density Matter Research Using Intense Heavy Ion Beams at the Future FAIR Facility at Darmstadt: The HEDgeHOB Collaboration
    Tahir, N. A.
    Lomonosov, I. V.
    Shutov, A.
    Kim, V.
    Fortov, V. E.
    Piriz, A. R.
    Wouchuk, G.
    Moreno, M. C. Serna
    Cela, J. J. Lopez
    Hoffmann, D. H. H.
    Deutsch, C.
    5TH INTERNATIONAL CONFERENCE ON INERTIAL FUSION SCIENCES AND APPLICATIONS (IFSA2007), 2008, 112
  • [27] Studies of high-energy density states using isochoric heating of matter by intense heavy ion beams: the HEDgeHOB Collaboration
    Tahir, N. A.
    Spiller, P.
    Piriz, A. R.
    Shutov, A.
    Lomonosov, I. V.
    Schollmeier, M.
    Pelka, A.
    Hoffmann, D. H. H.
    Deutsch, C.
    PHYSICA SCRIPTA, 2008, T132
  • [28] Intense, high-quality ion beams generated by ultra-intense lasers
    Roth, M
    Cowan, TE
    Gauthier, JC
    Vehn, JM
    Allen, M
    Audebert, P
    Blazevic, A
    Brambrink, E
    Fuchs, J
    Geissel, M
    Hegelich, M
    Karsch, S
    Ruhl, H
    Schlegel, T
    BEAMS 2002, 2002, 650 : 485 - 490
  • [29] Proposed High Energy Density Physics Research Using Intense Particle Beams at FAIR: The HEDgeHOB Collaboration
    Tahir, Naeem Ahmad
    Spiller, Peter
    Shutov, Alexander
    Lomonosov, Igor Valdimirovich
    Roberto Piriz, Antonio
    Redmer, Ronald
    Hoffmann, Dieter H. H.
    Fortov, Vladimir Evgenievich
    Deutsch, Claude
    Bock, Rudolf M.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2009, 37 (07) : 1267 - 1275
  • [30] Pyrometric system for temperature measurements of HED matter generated by intense heavy ion beams
    Ni, P.
    Hoffmann, D. H. H.
    Kulish, M.
    Nikolaev, D.
    Tahir, N. A.
    Udrea, S.
    Varentsov, D.
    Wahl, H.
    JOURNAL DE PHYSIQUE IV, 2006, 133 : 977 - 980