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Majorana Zero Modes in Graphene

机译:石墨烯中的Majorana零模式

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A clear demonstration of topological superconductivity (TS) and Majorana zero modes remains one of the major pending goals in the field of topological materials. One common strategy to generate TS is through the coupling of an s -wave superconductor to a helical half-metallic system. Numerous proposals for the latter have been put forward in the literature, most of them based on semiconductors or topological insulators with strong spin-orbit coupling. Here, we demonstrate an alternative approach for the creation of TS in graphene-superconductor junctions without the need for spin-orbit coupling. Our prediction stems from the helicity of graphene’s zero-Landau-level edge states in the presence of interactions and from the possibility, experimentally demonstrated, of tuning their magnetic properties with in-plane magnetic fields. We show how canted antiferromagnetic ordering in the graphene bulk close to neutrality induces TS along the junction and gives rise to isolated, topologically protected Majorana bound states at either end. We also discuss possible strategies to detect their presence in graphene Josephson junctions through Fraunhofer pattern anomalies and Andreev spectroscopy. The latter, in particular, exhibits strong unambiguous signatures of the presence of the Majorana states in the form of universal zero-bias anomalies. Remarkable progress has recently been reported in the fabrication of the proposed type of junctions, which offers a promising outlook for Majorana physics in graphene systems.
机译:拓扑超导(TS)和Majorana零模式的清晰演示仍然是拓扑材料领域中主要的未完成目标之一。产生TS的一种常见策略是将s波超导体耦合到螺旋半金属系统。文献中已经提出了许多针对后者的建议,其中大多数是基于具有强自旋轨道耦合的半导体或拓扑绝缘体。在这里,我们演示了一种在石墨烯-超导体结中创建TS的替代方法,而无需自旋轨道耦合。我们的预测源于在存在相互作用的情况下石墨烯的零兰道能级边缘状态的螺旋度,以及通过实验证明的通过面内磁场调整其磁性的可能性。我们展示了石墨烯块中接近中性的倾斜反铁磁有序如何沿结诱导TS并在两端产生孤立的,受拓扑保护的Majorana结合态。我们还讨论了可能的策略,以通过Fraunhofer模式异常和Andreev光谱检测其在石墨烯约瑟夫森结中的存在。尤其是后者,以普遍的零偏态的形式表现出马约拉邦的存在的强烈鲜明特征。最近,在所提出的结类型的制造中已经报告了显着的进展,这为石墨烯系统中的Majorana物理学提供了有希望的前景。

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