| Literature DB >> 29313354 |
Jisoo Moon1, Nikesh Koirala1, Maryam Salehi1, Wenhan Zhang1, Weida Wu1, Seongshik Oh1.
Abstract
Bi2Se3, one of the most widely studied topological insulators (TIs), is naturally electron-doped due to n-type native defects. However, many years of efforts to achieve p-type Bi2Se3 thin films have failed so far. Here, we provide a solution to this long-standing problem, showing that the main culprit has been the high density of interfacial defects. By suppressing these defects through an interfacial engineering scheme, we have successfully implemented p-type Bi2Se3 thin films down to the thinnest topological regime. On this platform, we present the first tunable quantum Hall effect (QHE) study in Bi2Se3 thin films and reveal not only significantly asymmetric QHE signatures across the Dirac point but also the presence of competing anomalous states near the zeroth Landau level. The availability of doping tunable Bi2Se3 thin films will now make it possible to implement various topological quantum devices, previously inaccessible.Keywords: Bi2Se3; Topological insulator; doping; interface; quantum Hall effect
Year: 2018 PMID: 29313354 DOI: 10.1021/acs.nanolett.7b04033
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189