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- W2060337669 abstract "CdTe films grown on glass substrates covered by fluorine-doped tin oxide by hot-wall epitaxy were studied through the interface dynamical scaling theory. Direct measures of the dynamical exponent revealed an intrinsically anomalous scaling characterized by a global roughness exponent $ensuremath{alpha}$, distinct from the local one (the Hurst exponent $H$) previously reported by Ferreira et al. [Appl. Phys. Lett.88, 244103 (2006)]. A variety of scaling behaviors was obtained with varying substrate temperature. In particular, a transition from an intrinsically anomalous scaling regime with $Hensuremath{ne}ensuremath{alpha}<1$ at low temperatures to a super-rough regime with $Hensuremath{ne}ensuremath{alpha}>1$ at high temperatures was observed. The temperature is a growth parameter that controls both the interface roughness and dynamical scaling exponents. Nonlocal effects are pointed out as the factors ruling the anomalous scaling behavior." @default.
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- W2060337669 date "2008-09-05" @default.
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- W2060337669 title "Anomalous scaling and super-roughness in the growth of CdTe polycrystalline films" @default.
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- W2060337669 doi "https://doi.org/10.1103/physrevb.78.115305" @default.
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