论文标题
在行星条件下了解密集的氢
Understanding dense hydrogen at planetary conditions
论文作者
论文摘要
高压和温度的材料对于行星科学和天体物理学,温暖的密集物理学以及惯性限制融合研究引起了极大的兴趣。行星结构模型取决于我们对地球不存在的异国情调条件下元素(及其混合物)行为的理解,同时行星是在极端条件下研究材料的天然实验室。在这篇综述中,我们讨论了模型的行星内饰与氢和氦的高压物理学之间的联系。首先,我们总结了确定氢和氦的状态方程以及最先进的理论方法方程的关键实验。接下来,我们将简要回顾我们当前对太阳系,木星和土星中巨型行星内部结构的了解,以及高压物理学对其表征的重要性。
Materials at high pressures and temperatures are of great interest for planetary science and astrophysics, warm dense matter physics, and inertial confinement fusion research. Planetary structure models rely on our understanding of the behaviour of elements (and their mixtures) at exotic conditions that do not exist on Earth, and at the same time planets serve as natural laboratories for studying materials at extreme conditions. In this review we discuss the connection between modelling planetary interiors and high-pressure physics of hydrogen and helium. First, we summarise key experiments for determining the equation of state and phase diagram of hydrogen and helium as well as state-of-the-art theoretical approaches. We next briefly review our current knowledge of the internal structures of the giant planets in the Solar System, Jupiter and Saturn, and the importance of high pressure physics to their characterisation.