Di Bernardo Iolanda, Hellerstedt Jack, Liu Chang, Akhgar Golrokh, Wu Weikang, Yang Shengyuan A, Culcer Dimitrie, Mo Sung-Kwan, Adam Shaffique, Edmonds Mark T, Fuhrer Michael S
Australian Research Council Centre of Excellence in Future Low-Energy Electronics Technologies, Monash University, Clayton, Victoria, 3800, Australia.
School of Physics and Astronomy, Monash University, Clayton, Victoria, 3800, Australia.
Adv Mater. 2021 Mar;33(11):e2005897. doi: 10.1002/adma.202005897. Epub 2021 Feb 3.
Trisodium bismuthide (Na Bi) is the first experimentally verified topological Dirac semimetal, and is a 3D analogue of graphene hosting relativistic Dirac fermions. Its unconventional momentum-energy relationship is interesting from a fundamental perspective, yielding exciting physical properties such as chiral charge carriers, the chiral anomaly, and weak anti-localization. It also shows promise for realizing topological electronic devices such as topological transistors. Herein, an overview of the substantial progress achieved in the last few years on Na Bi is presented, with a focus on technologically relevant large-area thin films synthesized via molecular beam epitaxy. Key theoretical aspects underpinning the unique electronic properties of Na Bi are introduced. Next, the growth process on different substrates is reviewed. Spectroscopic and microscopic features are illustrated, and an analysis of semiclassical and quantum transport phenomena in different doping regimes is provided. The emergent properties arising from confinement in two dimensions, including thickness-dependent and electric-field-driven topological phase transitions, are addressed, with an outlook toward current challenges and expected future progress.
铋化三钠(Na₃Bi)是首个经实验验证的拓扑狄拉克半金属,是承载相对论性狄拉克费米子的石墨烯的三维类似物。从基本原理的角度来看,其非常规的动量 - 能量关系很有趣,产生了诸如手性电荷载流子、手征反常和弱反局域化等令人兴奋的物理性质。它在实现诸如拓扑晶体管等拓扑电子器件方面也显示出前景。在此,概述了过去几年在Na₃Bi方面取得的重大进展,重点是通过分子束外延合成的与技术相关的大面积薄膜。介绍了支撑Na₃Bi独特电子性质的关键理论方面。接下来,回顾了在不同衬底上的生长过程。阐述了光谱和微观特征,并提供了对不同掺杂区域中半经典和量子输运现象的分析。讨论了二维限制产生的新兴性质,包括厚度依赖和电场驱动的拓扑相变,并展望了当前的挑战和预期的未来进展。