论文标题
最大角度扭曲的同性恋者系统中的高角度摩托车拓扑超导性
High-Angular-Momentum Topological Superconductivity in the Largest-Angle Twisted Homo-bilayer Systems
论文作者
论文摘要
我们研究了最大的角度扭曲的同性恋者(LA-THB)系统,该系统托管了Moiréless准晶体(QC)结构。我们建议使用这些材料生成高角度摩托车(HAM)拓扑超导能力(TSC),该材料受常规晶体材料所缺乏的QC对称性保护。 This proposal is based on our universal Ginzburg-Landau theory based analysis which yields the general conclusion that, when each $D_n$-symmetric ($n$ is even) monolayer hosts SC with pairing angular momentum $l\le \frac{n}{2}$, the interlayer Josephson coupling will induce SC with pairing angular momentum $L=l$ or $L=n-l$在LA-THB中,由微观细节确定。后一个只是HAM TSC,如果$ l> 0 $。根据我们修订的扰动波段理论,我们开发了一般的微观框架,以研究涉及电子电子相互作用的QC LA-THB,采用了三个例子,即30 $^\ Circ $ - 扭曲的双层石墨烯,30 $^\ circ $ circ $ circ $ circ $ - circ $ twisted bc bc $ coctere twist $ _3 $^$^$^$^$ - 45555555555555 cupr。 $ g+ig $ - $ h+ih $ - 和$ d+id $ - 带有HAM $ L = 4,5 $和2 $的TSC可以分别在这些系统中的某些兴奋剂机制中出现。
We study the largest-angle twisted homo-bilayer (LA-THB) systems, hosting Moiréless quasi-crystal (QC) structure. We propose to use these materials to generate high-angular-momentum (HAM) topological superconductivities (TSCs) protected by their QC symmetries absent on conventional crystalline materials. This proposal is based on our universal Ginzburg-Landau theory based analysis which yields the general conclusion that, when each $D_n$-symmetric ($n$ is even) monolayer hosts SC with pairing angular momentum $l\le \frac{n}{2}$, the interlayer Josephson coupling will induce SC with pairing angular momentum $L=l$ or $L=n-l$ in the LA-THB, determined by microscopic details. The latter one is just the HAM TSC if $l>0$. Based on our revised perturbational-band theory, we develop general microscopic framework to study the QC LA-THBs involving electron-electron interactions, adopting which we study three examples, i.e. the 30$^\circ$- twisted bilayer graphene, the 30$^\circ$- twisted bilayer BC$_3$, and the 45$^\circ$- twisted bilayer cuprates. The $g+ig$- $h+ih$- and $d+id$- TSCs with HAM $L=4,5$ and $2$ can emerge in certain doping regimes in these systems, respectively.