BiSe thin films heteroepitaxially grown on -RuCl
arXiv:2010.16349 · doi:10.1103/PhysRevMaterials.4.113404
Abstract
Combining various two-dimensional materials into novel van der Waals (vdW) heterostructures has been shown to lead to new emergent quantum systems. A novel heterostructure composed of a vdW topological insulator (TI) such as BiSe with a quantum spin liquid (QSL) such as -RuCl is of great interest for the potential for the chiral Dirac electrons in the TI surface states to interact strongly with the fractionalized fermionic spin excitations in the QSL. We report the heteroepitaxial growth of BiSe thin films on -RuCl as well as the characterization of their structural and electrical properties. BiSe thin films with an atomically smooth and uniform surface are grown by molecular beam epitaxy. The heterostructure exhibits a preferential epitaxial relationship corresponding to BiSe-RuCl commensurate supercells with a periodicity of 1.2 nm. The formation of the superlattice despite a lattice mismatch as large as 60% is attributed to the van der Waals heteroepitaxy. Magnetotransport measurements as a function of temperature show BiSe films grown on -RuCl are heavily -doped, ~10 cm, with mobility ~450 cm V s at low temperatures.
19 pages, 4 figures; accepted in Physical Review Materials
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