论文标题

Abelian Anyons的Kohn-Sham密度功能理论

Kohn-Sham Density Functional Theory of Abelian Anyons

论文作者

Hu, Yayun, Murthy, G., Rao, S., Jain, J. K.

论文摘要

我们开发了对非相互作用的Abelian Anyons的密度功能处理,该方法原则上能够处理具有外部潜力的大量人的系统。与几个颗粒的精确结果进行比较表明,该模型在定性和半量化上捕获了行为,尤其是在费米子统计附近。然后,我们使用统计参数$ 1+1/n $研究任何人,这些参数被认为将其凝结成超导状态。超导行为的指示是平均场结果,对于均匀的密度系统,基态能量在应用外部磁场的应用下增加,而不是其方向。我们的密度功能理论的分析并没有发现任何人的有限系统是这种情况,这可以通过大容量和边界之间的密度转移来适应弱的外部磁场,而不是通过跨有效的Landau级别的过渡来适应较弱的外部磁场,但是由于边界的效应,在热力动力学的效果中恢复了外部磁场的“ Meissner repuls”。我们还考虑了Anyons的量子厅效应,并表明其拓扑特性,例如激发和量化的霍尔电导的指控和统计。

We develop a density functional treatment of non-interacting abelian anyons, which is capable, in principle, of dealing with a system of a large number of anyons in an external potential. Comparison with exact results for few particles shows that the model captures the behavior qualitatively and semi-quantitatively, especially in the vicinity of the fermionic statistics. We then study anyons with statistics parameter $1+1/n$, which are thought to condense into a superconducting state. An indication of the superconducting behavior is the mean-field result that, for uniform density systems, the ground state energy increases under the application of an external magnetic field independent of its direction. Our density-functional-theory based analysis does not find that to be the case for finite systems of anyons, which can accommodate a weak external magnetic field through density transfer between the bulk and the boundary rather than through transitions across effective Landau levels, but the "Meissner repulsion" of the external magnetic field is recovered in the thermodynamic limit as the effect of the boundary becomes negligible. We also consider the quantum Hall effect of anyons, and show that its topological properties, such as the charge and statistics of the excitations and the quantized Hall conductance, arise in a self-consistent fashion.

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