Atomic layer molecular beam epitaxy of kagome magnet RMn6Sn6 (R = Er, Tb) thin films

Author:

Cheng Shuyu1ORCID,Liu Binzhi2ORCID,Lyalin Igor1ORCID,Zhou Wenyi1ORCID,Hwang Jinwoo2ORCID,Kawakami Roland K.1ORCID

Affiliation:

1. Department of Physics, The Ohio State University 1 , Columbus, Ohio 43210, USA

2. Department of Materials Science and Engineering, The Ohio State University 2 , Columbus, Ohio 43210, USA

Abstract

Kagome lattices have garnered substantial interest because their band structure consists of topological flat bands and Dirac cones. The RMn6Sn6 (R = rare earth) compounds are particularly interesting because of the existence of the large intrinsic anomalous Hall effect (AHE), which originates from the gapped Dirac cones near the Fermi level. This makes RMn6Sn6 an outstanding candidate for realizing the high-temperature quantum AHE. The growth of RMn6Sn6 thin films is beneficial for both fundamental research and potential applications. However, most of the studies on RMn6Sn6 have focused on bulk crystals, and the synthesis of RMn6Sn6 thin films has not been reported so far. Here, we report the atomic layer molecular beam epitaxy growth, structural and magnetic characterizations, and transport properties of ErMn6Sn6 and TbMn6Sn6 thin films. It is especially noteworthy that TbMn6Sn6 thin films have out-of-plane magnetic anisotropy, which is important for realizing the quantum AHE. Our work paves the avenue toward the control of the AHE using devices patterned from RMn6Sn6 thin films.

Funder

National Science Foundation

Air Force Office of Scientific Research

U.S. Department of Energy

Publisher

AIP Publishing

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