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- W2910861443 abstract "We studied magnetized topological insulator/superconductor junctions with the expectation of unconventional superconductive states holding Majorana fermions induced by superconductive proximity effects on the surface states of magnetized topological insulators (TIs), attached by conventional superconductors. We introduced Fe-doped BiSbTe2Se as an ideal magnetic TI and used the developed junction fabrication process to access the proximity-induced surface superconducting states. The bulk single crystals of the Fe-doped TI showed excellent bulk-insulating properties and ferromagnetism simultaneously at a low temperature. Meanwhile, the fabricated junctions also showed an insulating behavior above 100 K, as well as metallic conduction at a low temperature, which reflects bulk carrier freezing. In addition, we observed a proximity-induced gap structure in the conductance spectra. These results indicate that the junctions using the established materials and process are preferable to observe unconventional superconducting states which are induced via the surface channels of the magnetized TI. We believe that the developed process can be applied for the fabrication of complicated junctions and suites for braiding operations." @default.
- W2910861443 created "2019-01-25" @default.
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- W2910861443 date "2019-01-12" @default.
- W2910861443 modified "2023-10-02" @default.
- W2910861443 title "Proximity-Induced Superconducting States of Magnetically Doped 3D Topological Insulators with High Bulk Insulation" @default.
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- W2910861443 doi "https://doi.org/10.3390/condmat4010009" @default.
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