MnBi2Te4/FeTe heterostructures show interface-induced superconductivity coexisting with antiferromagnetism, with a proximity gap observed on the MnBi2Te4 surface via transport and STM.
The thin films of MnBi2Te4 were also achieved by molecular beam epitaxy (MBE) growth 13,23-29
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Coexistence of Superconductivity and Antiferromagnetism in Topological Magnet MnBi2Te4 Films
MnBi2Te4/FeTe heterostructures show interface-induced superconductivity coexisting with antiferromagnetism, with a proximity gap observed on the MnBi2Te4 surface via transport and STM.