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- W2468150284 abstract "The structural and electronic properties of FeSe ultrathin layers on $mathrm{B}{mathrm{i}}_{2}mathrm{S}{mathrm{e}}_{3}$ have been investigated with a combination of scanning tunneling microscopy and spectroscopy and angle-resolved photoemission spectroscopy. The FeSe multilayers, which are predominantly 3--5 monolayers (MLs) thick, exhibit a hole pocket-like electron band at $overline{mathrm{ensuremath{Gamma}}}$ and a dumbbell-like feature at $overline{M}$, similar to multilayers of FeSe on $mathrm{SrTi}{mathrm{O}}_{3}$. Moreover, the topological state of the $mathrm{B}{mathrm{i}}_{2}mathrm{S}{mathrm{e}}_{3}$ is preserved beneath the FeSe layer, as indicated by a heavily n-doped Dirac cone. Low temperature scanning tunneling spectroscopy does not exhibit a superconducting gap for any investigated thickness down to a temperature of 5 K." @default.
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- W2468150284 date "2016-09-26" @default.
- W2468150284 modified "2023-10-14" @default.
- W2468150284 title "Absence of superconductivity in ultrathin layers of FeSe synthesized on a topological insulator" @default.
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- W2468150284 doi "https://doi.org/10.1103/physrevb.94.125437" @default.
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