论文标题

磁性与拓扑绝缘体的接近耦合的最新进展

Recent Progress in Proximity Coupling of Magnetism to Topological Insulators

论文作者

Bhattacharyya, Semonti, Akhgar, Golrokh, Gebert, Matt, Karel, Julie, Edmonds, Mark T, Fuhrer, Michael S

论文摘要

在三维拓扑绝缘子中诱导远距离磁性秩序可能会隔离泥土状的金属表面状态,从而导致异国情调的新阶段,例如量子异常霍尔效应或轴突绝缘子状态。这些磁性拓扑阶段可以托管强大的,无耗散的电荷和自旋电流或独特的磁电行为,可以在低能电子和旋转的应用中利用它们。尽管已经成功实施了几种不同的策略来实现这些状态,但迄今为止,这些现象已局限于低于一些开尔文的温度。在这篇综述中,我们专注于一种策略,通过磁性材料的邻近性诱导拓扑绝缘体中的磁顺序,该材料具有室温运行的能力,从而释放了用于应用的磁性拓扑阶段的潜力。我们讨论了这种策略的独特优势,促进磁接近效应的重要物理机制以及在拓扑绝缘子中实现,理解和利用近似耦合的磁性的最新进展。我们还强调了一些新兴的新现象和通过磁性和拓扑材料(例如天空和拓扑厅效应)的接近耦合来实现的新现象和应用,我们以对该领域的剩余挑战和机会的前景结论。

Inducing long-range magnetic order in three-dimensional topological insulators can gap the Diraclike metallic surface states, leading to exotic new phases such as the quantum anomalous Hall effect or the axion insulator state. These magnetic topological phases can host robust, dissipationless charge and spin currents or unique magnetoelectric behavior, which can be exploited in low-energy electronics and spintronics applications. Although several different strategies have been successfully implemented to realize these states, to date these phenomena have been confined to temperatures below a few Kelvin. In this review, we focus on one strategy, inducing magnetic order in topological insulators by proximity of magnetic materials, which has the capability for room temperature operation, unlocking the potential of magnetic topological phases for applications. We discuss the unique advantages of this strategy, the important physical mechanisms facilitating magnetic proximity effect, and the recent progress to achieve, understand, and harness proximity-coupled magnetic order in topological insulators. We also highlight some emerging new phenomena and applications enabled by proximity coupling of magnetism and topological materials, such as skyrmions and the topological Hall effect, and we conclude with an outlook on remaining challenges and opportunities in the field.

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