Molecular beam epitaxy of three-dimensional Dirac material Sr3PbO

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Abstract

A series of anti-perovskites including Sr3PbO are recently predicted to be a three-dimensional Dirac material with a small mass gap, which may be a topological crystalline insulator. Here, we report the epitaxial growth of Sr3PbO thin films on LaAlO3 using molecular beam epitaxy. X-ray diffraction indicates (001) growth of Sr3PbO, where [110] of Sr3PbO matches [100] of LaAlO3. Measurements of the Sr3PbO films with parylene/Al capping layers reveal a metallic conduction with p-type carrier density of ∼1020 cm-3. The successful growth of high quality Sr3PbO film is an important step for the exploration of its unique topological properties.

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Samal, D., Nakamura, H., & Takagi, H. (2016). Molecular beam epitaxy of three-dimensional Dirac material Sr3PbO. APL Materials, 4(7). https://doi.org/10.1063/1.4955213

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