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Titlebook: Electron Correlation in New Materials and Nanosystems; Kurt Scharnberg,Sergei Kruchinin Conference proceedings 20071st edition Springer Sc

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ELECTRON-ELECTRON INTERACTION IN CARBON NANOSTRUCTURESfor investigation. We found that λ. = 0.2 for arc-MWNTs (before and after bromination treatment); λ. = 0.1 for pyrolytic graphite; λ. >0 for c-MWNTs. We conclude that the curvature of graphene layers in carbon nanostructures leads to the increase of the electron-electron interaction constant λ..
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II.1 Magnesium diboride and the two-band scenarioed with the change of the Fermi surface dimensionality of one of the superlattice subbands. The case of light element diborides where Mg is substituted for Al in AlB. and its similarity with intercalated graphite compounds is discussed.
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II.2 Cuprate and other unconventional superconductorsspin response in the coexisting DDW and d..-..-wave superconducting (DSC) states and discuss the peculiar features of the resonance peak dispersion. Furthermore, we investigate the infuence of various tight-binding parameters and the orthorhombic distortions on the robustness of the features discussed.
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NANOSCALE STUDIES ON METAL-ORGANIC INTERFACESeing accessed in the BEEM experiment, since the measured currents are larger than a purely tunneling contribution. Our results are consistent with previously published results on a similar molecule. Implications for device applications are briefly discussed.
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II.2 Cuprate and other unconventional superconductors taken, utilizing the phase-shifts inherent to the .-wave superconducting order parameter. This paper is intended to reflect the current status of experiments using high-T. and low-T. Josephson contacts.
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https://doi.org/10.1007/3-540-29064-82-ethylhexyloxy)-p-phenylenevinylene (MEHPPV), and a metal-molecule interface Ag-terthiophene-Au, which are evaporated, spin-coated, and self assembled on an Au film respectively. All systems show spatially non-uniform carrier injection. Physical origins of the non-uniform carrier injection and its
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Michael Resch,Thomas Bönisch,Yoshiki Seoant λ. from the analysis of quantum correction to the magnetic susceptibility and the magnetoresistance was developed. Three types of carbon materials: arc-produced multiwalled carbon nanotubes (arc-MWNTs), CVD-produced catalytic multiwalled carbon nanotubes (c-MWNTs) and pyrolytic carbon were used
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