Zuo Xian-Jun
Department of Physics, Zhejiang University of Technology, Hangzhou 310023, China.
Phys Chem Chem Phys. 2018 Mar 7;20(10):6951-6958. doi: 10.1039/c7cp08499d.
Self-consistent calculations are performed to characterize the quantum corral effects on the electronic states of chiral d + id or f-wave superconductors in this paper. A variety of spatial structures of competing orders are revealed in the presence of ferromagnetic nano-corrals, and superconducting islands are found to be absent in the case of small corrals while being seen for large corrals. Compared with the local suppression of superconductivity by a magnetic impurity inside the corral, surprisingly, an additional remarkable feature, i.e., obvious oscillations or enhancement of superconductivity around a non-magnetic impurity, is observed inside the magnetic corral. This is important in view of applications, especially in view of the demand for devices to locally produce strong superconductivity. Meanwhile, the charge density displays obvious modulations due to quantum confinement but in contrast, the spin density pattern exhibits its robustness against the corral effect. Furthermore, we explore the local density of states so as to be directly checked by experiments. We demonstrate that a magnetic corral can suppress the formation of quasi-particle bound states induced by an impurity inside the corral in the chiral d + id state while the f-wave case shows different behaviors. These results also propose a new route to make a distinction between the two competing pairing states in triangular-lattice superconductors.
本文进行了自洽计算,以表征量子围栏对手性d + id或f波超导体电子态的影响。在存在铁磁纳米围栏的情况下,揭示了各种竞争序的空间结构,发现对于小围栏不存在超导岛,而对于大围栏则可以看到超导岛。与围栏内磁性杂质对超导性的局部抑制相比,令人惊讶的是,在磁性围栏内观察到另一个显著特征,即在非磁性杂质周围超导性明显振荡或增强。鉴于应用,特别是鉴于对局部产生强超导性的器件的需求,这一点很重要。同时,由于量子限制,电荷密度显示出明显的调制,但相反,自旋密度模式表现出对围栏效应的鲁棒性。此外,我们探索了态密度以便能直接通过实验进行检验。我们证明,在d + id手性态中,磁性围栏可以抑制围栏内杂质诱导的准粒子束缚态的形成,而f波情况则表现出不同的行为。这些结果还为区分三角晶格超导体中两种竞争配对态提出了一条新途径。