论文标题
在最大扭曲的双层旋转三层山谷山谷超导体中的非亚洲拓扑超导性
Non-Abelian topological superconductivity in maximally twisted double-layer spin-triplet valley-singlet superconductors
论文作者
论文摘要
最近的理论和实验研究表明,在某些两种valley电子液体中,包括菱形三层石墨烯,Bernal双层石墨烯和ZRNCL在内的某些两谷电子液体中的新型自旋 - 三角谷山谷(STVS)超导相。这个完全间隙的阶段是异国情调的,因为它结合了库珀对的库珀对,来自围绕六角形布里鲁因区域的相对角的山谷中的山谷电子,但在拓扑上是微不足道的。在这里,我们预测,在将两层的STVS材料堆叠在一起,具有角度转换后,一个新型的手性拓扑阶段 - $ f \ pm如果“ $ - 波浪超导体”,则出现在“最大'twist角度的30 $^{\ circ} $的“最大'twist角”附近,该系统将成为一个带有外在的Quasi-quasi-quasi-CryStal,并带有12倍的tiring tilling。所得的复合材料是一个非 - 亚伯拓扑超导体(TSC),其边缘有奇数的手性majorana模式,而单个MajoraNA零模式(MZM)位于涡流核心中。通过对称分析和基于新型准晶体带结构技术的详细显微镜建模,我们证明了当隔离的费米口袋聚集到MoiréBrillouin区中心围绕单个连接的费米表面时,非亚伯TSC形成,并且在MoiréBrillouin区域的中心稳定,并且在广泛的电子密度范围内稳定。如果'$ - 波相导致异常的$π$ - 周期间层间约瑟夫森效应,我们会进一步讨论导致$ f \ pm的能量学,这可以作为手性相的独特签名。我们的结果与小角扭曲的石墨烯中具有山谷的莫伊尔物理学不同,我们的结果建立了大角度的Moiré物理学,在最大扭曲附近产生,这是通往内在TSC的新途径,并具有非亚洲激发。
Recent theoretical and experimental studies point to a novel spin-triplet valley-singlet (STVS) superconducting phase in certain two-valley electron liquids, including rhombohedral trilayer graphene, Bernal bilayer graphene and ZrNCl. This fully gapped phase is exotic in that it combines into Cooper pairs same-spin electrons from valleys centered around the opposing corners of a hexagonal Brillouin zone, but is, nevertheless, topologically trivial. Here, we predict that upon stacking two layers of an STVS material with an angular twist, a novel chiral topological phase -- an $f \pm if'$-wave superconductor -- emerges in the vicinity of the `maximal' twist angle of 30$^{\circ}$ where the system becomes an extrinsic quasi-crystal with 12-fold tiling. The resulting composite is a non-Abelian topological superconductor (TSC) with an odd number of chiral Majorana modes at its edges and a single Majorana zero mode (MZM) localized in the vortex core. Through symmetry analysis and detailed microscopic modelling based on a novel quasi-crystal band structure technique, we demonstrate that the non-Abelian TSC forms when the isolated Fermi pockets coalesce into a single connected Fermi surface around the center of the moiré Brillouin zone and is stable over a wide range of electron density. We further discuss how the energetics leading to the $f \pm if'$-wave phase results in anomalous $π$-periodic inter-layer Josephson effect, which can serve as a distinctive signature of the chiral phase. Distinct from the valley-preserving moiré physics in small-angle twisted graphene, our results establish the large-angle moiré physics arising near maximal twist as a new avenue toward intrinsic TSC with non-Abelian excitations.