Yazdani Ali, von Oppen Felix, Halperin Bertrand I, Yacoby Amir
Joseph Henry Laboratories and Department of Physics, Princeton University, Princeton, NJ 08540, USA.
Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universität Berlin, 14195 Berlin, Germany.
Science. 2023 Jun 23;380(6651):eade0850. doi: 10.1126/science.ade0850.
Over the past decade, there have been considerable efforts to observe non-abelian quasiparticles in novel quantum materials and devices. These efforts are motivated by the goals of demonstrating quantum statistics of quasiparticles beyond those of fermions and bosons and of establishing the underlying science for the creation of topologically protected quantum bits. In this Review, we focus on efforts to create topological superconducting phases that host Majorana zero modes. We consider the lessons learned from existing experimental efforts, which are motivating both improvements to present platforms and the exploration of new approaches. Although the experimental detection of non-abelian quasiparticles remains challenging, the knowledge gained thus far and the opportunities ahead offer high potential for discovery and advances in this exciting area of quantum physics.
在过去十年中,人们付出了巨大努力来在新型量子材料和器件中观测非阿贝尔准粒子。这些努力的动机在于展示超越费米子和玻色子的准粒子量子统计特性,以及为创建拓扑保护量子比特奠定基础科学。在本综述中,我们聚焦于创建承载马约拉纳零模的拓扑超导相的努力。我们考虑从现有实验工作中吸取的经验教训,这些经验教训既推动了对现有平台的改进,也促使人们探索新方法。尽管非阿贝尔准粒子的实验检测仍然具有挑战性,但迄今为止所获得的知识以及未来的机遇为这一令人兴奋的量子物理领域带来了发现和进展的巨大潜力。