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首页> 外文期刊>Astrophysics and space science >Laboratory planetary physics using intense heavy ion beams at the Facility for Antiprotons and Ion Research at Darmstadt: The HEDgeHOB collaboration
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Laboratory planetary physics using intense heavy ion beams at the Facility for Antiprotons and Ion Research at Darmstadt: The HEDgeHOB collaboration

机译:达姆施塔特反质子和离子研究设施中使用强重离子束的实验室行星物理学:HEDgeHOB合作

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摘要

Development of ultra-high power lasers has lead to the very interesting and important field of Laboratory Astrophysics. Recent progress and expected near future developments in the technology of strongly bunched intense particle beams has opened up the possibility of studying planetary interiors in the laboratory which hopefully will eventually converge in the new field of Laboratory Planetary Physics. GSI Helmholzzentrum für Schwerionenforschung, Darmstadt is a well known laboratory worldwide due to its unique particle accelerator facilities. Construction of the new huge accelerator complex, the Facility for Antiprotons and Ion Research (FAIR), will substantially improve the existing capabilities of the GSI. A dedicated program named, HEDgeHOB, that aims to study different problems in High Energy Density (HED) Physics at the FAIR facility, has been proposed. One of these proposed experiments LAPLAS (LAboratory PLAnetary Science), aim to study materials at extreme conditions as relevant for the interiors of giant planets. In this paper we present simulation results that show that various regions of the high-pressure phase diagram of water can be probed within the LAPLAS experiments. For instance, the plasma and the superionic phase are predicted to occur in the interior of water-rich planets such as Uranus and Neptune as well as in extrasolar planets such as GJ 436b.
机译:超高功率激光器的发展导致了实验室天体物理学的非常有趣和重要的领域。强束强粒子束技术的最新进展和不久的将来的发展为在实验室研究行星内部提供了可能性,有望最终将其汇聚到实验室行星物理学的新领域。达姆施塔特的GSI HelmholzzentrumfürSchwerionenforschung,由于其独特的粒子加速器设施而成为全球知名的实验室。新的大型加速器综合体的建设,即反质子和离子研究设施(FAIR),将大大改善GSI的现有能力。已经提出了一个名为HEDgeHOB的专用程序,该程序旨在研究FAIR设施中高能密度(HED)物理中的不同问题。这些拟议的实验之一LAPLAS(实验室行星科学)旨在研究与巨型行星内部有关的极端条件下的材料。在本文中,我们提供的模拟结果表明,可以在LAPLAS实验中探测水的高压相图的各个区域。例如,预计等离子体和超离子相将发生在富水行星(如天王星和海王星)的内部以及太阳系外行星(如GJ 436b)中。

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