首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Studies of heavy ion-induced high-energy density states in matter at the GSI Darmstadt SIS-18 and future FAIR facility
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Studies of heavy ion-induced high-energy density states in matter at the GSI Darmstadt SIS-18 and future FAIR facility

机译:在GSI达姆施塔特SIS-18和未来的FAIR设施中研究重离子诱导的高能密度状态

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摘要

This paper presents numerical simulation results of heating and compression of matter using intense beams of energetic heavy ions. In this study we consider different beam parameters that include those which are currently available at the heavy ion synchrotron, SIS 18 at the Gesellschaft fur Schwerionenforschung (GSI), Darmstadt and those which will be available in the near future as a result of the upgraded facility. In addition to this, we carried out detailed calculations considering parameters of high-intensity beam which will be generated at the GSI future Facility for Antiprotons and Ion Research (FAIR facility) that has been approved by the German Government. These simulations show that by using the above ion beam parameter range, it will be possible to carry out very useful studies on the thermophysical properties of high-energy density (HED) states in matter. This scheme would make it possible to investigate those regions of the phase diagram that are either very difficult to access or even are unaccessible using the traditional methods of shock waves. Moreover, employing a hollow ion beam which has an annular (ring shaped) focal spot, it would be possible to achieve a low entropy compression of a test material like hydrogen, which is enclosed in a cylindrical shell of a high-density material such as lead or gold. These experiments will enable one to study the interiors of Giant planets, Jupiter and Saturn as well as to investigate the problem of hydrogen metallization.
机译:本文介绍了使用高能重离子束对物质进行加热和压缩的数值模拟结果。在这项研究中,我们考虑了不同的束参数,包括重离子同步加速器当前可用的那些参数,达姆施塔特的德国施舍尔嫩福雄宫(GSI)的SIS 18,以及升级后的设备将在不久的将来提供的那些参数。 。除此之外,我们还考虑了由德国政府批准的GSI未来反质子和离子研究设施(FAIR设施)产生的高强度束参数的详细计算。这些模拟表明,通过使用上述离子束参数范围,将有可能对物质中高能密度(HED)态的热物理性质进行非常有用的研究。该方案将使得有可能研究相图的那些区域,这些区域要么很难使用传统的冲击波访问,要么甚至无法使用传统的冲击波访问。此外,采用具有环形(环形)焦点的中空离子束,可以实现对诸如氢的测试材料的低熵压缩,该测试材料被封闭在诸如高密度材料的圆柱形壳体中。铅或金。这些实验将使人们能够研究巨型行星,木星和土星的内部,以及研究氢金属化的问题。

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