论文标题
底态和氢原子的极化附近
Ground state and polarization of an hydrogen-like atom near a Weyl semimetal
论文作者
论文摘要
在本文中,我们研究了拓扑Weyl semimetal(WSM)对基态和表面附近氢原子的极化的影响。假定WSM处于平衡状态和中性点处,以便通过轴支电动力学对原子电荷与材料之间的相互作用进行了充分描述(在非智障方案中),这是WSM块状大厅中异常霍尔效应的一个实验可观察到的。 ATOM-WSM相互作用为Casimir-Polder电势提供了其他贡献,从而改变了能量光谱和波函数,现在已成为距离。使用变分方法,我们解决了原子电子的相应Schrödinger方程。分析基态和极化是原子表面距离的函数,我们直接通过将我们的结果与拓扑琐碎的样本进行比较,直接观察了材料的非平凡拓扑。我们还通过假设真空中的氢原子来研究培养基介电常数的影响,以及半导体砷化盐(GAAS)(GAAS)和磷酸盐(GAP)中的供体杂质。我们发现,拓扑相互作用的表现是有效的吸收电荷,因此电子云倾向于偏振到材料的界面。此外,波功能归一化的损失被解释为限制状态损坏的下方的关键位置。
In this paper we study the effects of a topological Weyl semimetal (WSM) upon the ground state and polarization of an hydrogen-like atom near its surface. The WSM is assumed to be in the equilibrium state and at the neutrality point, such that the interaction between the atomic charges and the material is fully described (in the non retarded regime) by axion electrodynamics, which is an experimentally observable signature of the anomalous Hall effect in the bulk of the WSM. The atom-WSM interaction provides additional contributions to the Casimir-Polder potential thus modifying the energy spectra and wave function, which now became distance dependent. Using variational methods, we solve the corresponding Schrödinger equation for the atomic electron. The ground state and the polarization are analyzed as a function of the atom-surface distance, and we directly observe the effects of the nontrivial topology of the material by comparing our results with that of a topologically trivial sample. We also study the impact of the medium's permittivity by assuming a hydrogen atom in vacuum, and a donor impurity in the semiconductors gallium arsenide (GaAs) and gallium phosphide (GaP). We found that the topological interaction behaves as an effective-attractive charge so that the electronic cloud tends to be polarized to the interface of materials. Moreover, the loss of wave-function normalization is interpreted as a critical location from below which the bound state is broken.