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TAHIR, N. A; DEUTSCH, C; PIRIZ, A. R; SHILKIN, N; SPILLER, P; SHUTOV, A; TEMPORAL, M; TERNOVOI, V; UDREA, S; VARENTSOV, D; FORTOV, V. E; GRYAZNOV, V; HOFFMANN, D. H. H; KULISH, M; LOMONOSOV, I. V; MINTSEV, V; NI, P; NIKOLAEV, D
Physical review letters, 07/2005, Letnik: 95, Številka: 3Journal Article
The subject of high-energy-density (HED) states in matter is of considerable importance to numerous branches of basic as well as applied physics. Intense heavy-ion beams are an excellent tool to create large samples of HED matter in the laboratory with fairly uniform physical conditions. Gesellschaft für Schwerionenforschung, Darmstadt, is a unique worldwide laboratory that has a heavy-ion synchrotron, SIS18, that delivers intense beams of energetic heavy ions. Construction of a much more powerful synchrotron, SIS100, at the future international facility for antiprotons and ion research (FAIR) at Darmstadt will lead to an increase in beam intensity by 3 orders of magnitude compared to what is currently available. The purpose of this Letter is to investigate with the help of two-dimensional numerical simulations, the potential of the FAIR to carry out research in the field of HED states in matter.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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