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Observation of finite-wavelength screening in high-energy-density matter

机译:高能密度物质有限波长筛选的观察

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摘要

A key component for the description of charged particle systems is the screening of the Coulomb interaction between charge carriers. First investigated in the 1920s by Debye and Hückel for electrolytes, charge screening is important for determining the structural and transport properties of matter as diverse as astrophysical and laboratory plasmas, nuclear matter such as quark-gluon plasmas, electrons in solids, planetary cores and charged macromolecules. For systems with negligible dynamics, screening is still mostly described using a Debye–Hückel-type approach. Here, we report the novel observation of a significant departure from the Debye–Hückel-type model in high-energy-density matter by probing laser-driven, shock-compressed plastic with high-energy X-rays. We use spectrally resolved X-ray scattering in a geometry that enables direct investigation of the screening cloud, and demonstrate that the observed elastic scattering amplitude is only well described within a more general approach.
机译:描述带电粒子系统的关键因素是筛选电荷载体之间的库仑相互作用。电荷筛选在1920年代由Debye和Hückel首次对电解质进行了研究,电荷筛选对于确定物质的结构和传输性质非常重要,这些物质包括天体物理学和实验室等离子体,核物质(如夸克-胶子等离子体),固体中的电子,固体,行星核和带电大分子。对于动力学可以忽略不计的系统,仍然大多使用Debye-Hückel型方法来描述筛选。在这里,我们报道了通过高能X射线探测激光驱动的冲击压缩塑料而在高能密度物质中与Debye-Hückel型模型大相径庭的新颖观察。我们在能够直接检查筛查云的几何形状中使用光谱分辨X射线散射,并证明观察到的弹性散射幅度仅在更通用的方法中得到了很好的描述。

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