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首页> 外文期刊>Open Journal of Modelling and Simulation >Modern Ab-Initio Calculations on Modified Tomas-Fermi-Dirac Theory
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Modern Ab-Initio Calculations on Modified Tomas-Fermi-Dirac Theory

机译:修正的Tomas-Fermi-Dirac理论的现代从头算计算

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摘要

Thomas-Fermi theory is an approximate method, which is widely used to describe the properties of matter at various hierarchical levels (atomic nucleus, atom, molecule, solid, etc.). Special development is achieved using Thomas-Fermi theory to the theory of extreme states of matter appearing under high pressures, high temperatures or strong external fields. Relevant sections of physics and related sciences (astrophysics, quantum chemistry, a number of applied sciences) determine the scope of Thomas-Fermi theory. Popularity Thomas-Fermi theory is related to its relative simplicity, clarity and versatility. The latter means that the result of the calculation by Thomas-Fermi theory applies immediately to all chemical elements: the transition from element to element is as simple scale transformation. These features make it to be a highly convenient tool for qualitative and, in many cases, and quantitative analysis.
机译:托马斯·费米理论是一种近似方法,广泛用于描述物质在各个层次级别(原子核,原子,分子,固体等)的性质。使用Thomas-Fermi理论到在高压,高温或强外部电场下出现的极端物质状态理论,可以实现特殊的发展。物理学和相关科学(天体物理学,量子化学,许多应用科学)的相关部分决定了托马斯·费米理论的范围。流行Thomas-Fermi理论与其相对简单,清晰和多功能性有关。后者意味着Thomas-Fermi理论的计算结果立即适用于所有化学元素:元素之间的过渡就像简单的标度转换一样。这些功能使它成为定性分析(在许多情况下)和定量分析的非常方便的工具。

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