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- W2022206122 abstract "The role of the $mathrm{Si}(111)mathrm{text{ensuremath{-}}}(4ifmmodetimeselsetexttimesfi{}1)mathrm{text{ensuremath{-}}}mathrm{In}$ surface as an atomic-scale geometrical template for the growth of Ag thin films is clarified by scanning tunneling microscopy and low energy electron diffraction. Low-temperature grown Ag films are found to have stripe structures with a transverse periodicity equal to that of indium chains of the $mathrm{Si}(111)mathrm{text{ensuremath{-}}}(4ifmmodetimeselsetexttimesfi{}1)mathrm{text{ensuremath{-}}}mathrm{In}$. The stripes exhibit a structural transformation at the thickness of 6 monolayers (ML); this relaxation allows the stripes to persist up to a thickness as large as 30 ML ($ensuremath{cong}7text{ }text{ }mathrm{nm}$) while maintaining their mean periodicity. We attribute this stability to a coincidental matching of the periodicity and the corrugation amplitude between the Ag film and the substrate, which is realized by periodic insertion of stacking faults into a Ag fcc crystal." @default.
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- W2022206122 date "2006-04-07" @default.
- W2022206122 modified "2023-10-16" @default.
- W2022206122 title "One-Dimensional Surface Reconstruction as an Atomic-Scale Template for the Growth of Periodically Striped Ag Films" @default.
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- W2022206122 doi "https://doi.org/10.1103/physrevlett.96.136104" @default.
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