首页> 外文期刊>The European physical journal, B. Condensed matter physics >The 5f localization/delocalization in square and hexagonal americium monolayers: a FP-LAPW electronic structure study
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The 5f localization/delocalization in square and hexagonal americium monolayers: a FP-LAPW electronic structure study

机译:正方形和六角形mono单层中的5f定位/离域:FP-LAPW电子结构研究

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摘要

The electronic and geometrical properties of bulk americium and square and hexagonal americium monolayers have been studied with the full-potential linearized augmented plane wave (FP-LAPW) method. The effects of several common approximations are examined: (1) non-spin polarization (NSP) vs. spin polarization (SP); (2) scalar-relativity (no spin-orbit coupling (NSO)) vs. full-relativity (i.e., with spin-orbit (SO) coupling included); (3) local-density approximation (LDA) vs. generalized-gradient approximation (GGA). Our results indicate that both spin polarization and spin orbit coupling play important roles in determining the geometrical and electronic properties of americium bulk and monolayers. A compression of both americium square and hexagonal monolayers compared to the americium bulk is also observed. In general, the LDA is found to underestimate the equilibrium lattice constant and give a larger total energy compared to the GGA calculations. While spin orbit coupling shows a similar effect on both square and hexagonal monolayer calculations regardless of the model, GGA versus LDA, an unusual spin polarization effect on both square and hexagonal monolayers is found in the LDA results as compared with the GGA results. The 5f delocalization transition of americium is employed to explain our observed unusual spin polarization effect. In addition, our results at the LDA level of theory indicate a possible 5f delocalization could happen in the americium surface within the same Am II (fcc crystal structure) phase, unlike the usually reported americium 5f delocalization which is associated with crystal structure change. The similarities and dissimilarities between the properties of an Am monolayer and a Pu monolayer are discussed in detail.
机译:使用全电位线性化增强平面波(FP-LAPW)方法研究了本体a以及正方形和六角形meric单层的电子和几何性质。研究了几种常见近似的影响:(1)非自旋极化(NSP)与自旋极化(SP); (2)标量相对性(无自旋轨道耦合(NSO))与全相对性(即包括自旋轨道(SO)耦合); (3)局部密度近似(LDA)与广义梯度近似(GGA)。我们的结果表明,自旋极化和自旋轨道耦合都在确定bulk本体和单分子层的几何和电子性质中起重要作用。还观察到与square本体相比,meric正方形和六角形单层的压缩。通常,与GGA计算相比,发现LDA会低估平衡晶格常数并提供更大的总能量。尽管自旋轨道耦合对正方形和六边形单层计算都显示出相似的效果,而与模型,GGA与LDA无关,但与GGA结果相比,在LDA结果中发现对正方形和六边形单层都有不同寻常的自旋极化效应。 f的5f离域转变用于解释我们观察到的异常自旋极化效应。此外,我们在LDA理论水平上的结果表明,在同一Am II(fcc晶体结构)相中的surface表面可能发生5f脱域,这与通常报道的与晶体结构变化相关的5f脱域不同。详细讨论了Am单层和Pu单层的性质之间的异同。

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