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- W2317363549 abstract "We present detailed low-temperature scanning tunneling spectroscopy (STS) investigations of the local electronic density of states (DOS) on the fivefold and twofold $i$-Al${}_{70}$Pd${}_{21}$Mn${}_{9}$; pseudo tenfold ensuremath{xi}ensuremath{'}-Al${}_{72}$Pd${}_{25}$Mn${}_{3}$; tenfold $d$-Al${}_{77}$Ni${}_{17}$Co${}_{6}$; twofold-(12110) $d$-Al${}_{72.9}$Ni${}_{10.4}$Co${}_{16.7}$; (100) Y-Al${}_{75.8}$Ni${}_{2.1}$Co${}_{22.1}$; and (111) Al surface in the range of +/$ensuremath{-}$ 1 eV around the Fermi energy. All these quasicrystals and approximants exhibit the theoretically predicted electronic pseudogap. We observe no evidence for a correlation between the depth of this pseudogap, as measured by STS, and the remarkably high electrical resistivity of the investigated quasicrystals and approximants. A parametrization of the spatial variability of STS spectra is introduced as a measure of the magnitude of the electron localization for a given system. The resulting $stackrel{ifmmode hat{}else ^{}fi{}}{mathrm{S}}$ parameter is found to be proportional to the square root of the electrical resistivity. This finding supports the validity of interpreting spatial variations of fine-structure features in the STS spectra of Al-based quasicrystals and approximants in terms of electron localization." @default.
- W2317363549 created "2016-06-24" @default.
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- W2317363549 date "2013-02-19" @default.
- W2317363549 modified "2023-09-26" @default.
- W2317363549 title "Correlating scanning tunneling spectroscopy with the electrical resistivity of Al-based quasicrystals and approximants" @default.
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- W2317363549 doi "https://doi.org/10.1103/physrevb.87.075425" @default.
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