Literature DB >> 30663307

Engineering Topological Superlattices and Phase Diagrams.

Pavel P Shibayev, Elio J König, Maryam Salehi, Jisoo Moon, Myung-Geun Han1, Seongshik Oh.   

Abstract

The search for new topological materials and states of matter is presently at the forefront of quantum materials research. One powerful approach to novel topological phases beyond the thermodynamic space is to combine different topological/functional materials into a single materials platform in the form of superlattices. However, despite some previous efforts there has been a significant gap between theories and experiments in this direction. Here, we provide the first detailed set of experimentally verifiable phase diagrams of topological superlattices composed of archetypal topological insulator, Bi2Se3, and normal insulator, In2Se3, by combining molecular-level materials control, low-temperature magnetotransport measurements, and field theoretical calculations. We show how the electronic properties of topological superlattices evolve with unit-layer thicknesses and utilize the weak antilocalization effect as a tool to gain quantitative insights into the evolution of conducting channels within each set of heterostructures. This orchestrated study opens the door to the possibility of creating a variety of artificial-topological-phases by combining topological materials with various other functional building blocks such as superconductors and magnetic materials.

Keywords:  Superlattices; phase diagrams; topological insulators; weak antilocalization

Year:  2019        PMID: 30663307     DOI: 10.1021/acs.nanolett.8b03751

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  1 in total

1.  The dimensional crossover of quantum transport properties in few-layered Bi2Se3 thin films.

Authors:  Liang Yang; Zhenhua Wang; Mingze Li; Xuan P A Gao; Zhidong Zhang
Journal:  Nanoscale Adv       Date:  2019-04-17
  1 in total

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