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We present a quantitative analysis of electron energy loss (EEL) spectra to investigate the initial growth of C 60 thin films on a graphite substrate at room temperature. The approach is to fit the experimental data to a parameterized simulation, which includes both a growth model and the treatment of electron scattering. A rate equation approach is used to characterize the growth by a single...
We revisit the electronical and dynamical properties of the graphite, studied by high-resolution energy electron loss spectroscopy (HREELS). We measured both the low-energy plasmon and the phonon modes, and we report a non-dielectric behaviour of the plasmon for primary energies in the range of 6–190eV. Whereas we can follow the dispersion of the phonon modes, it appears impossible to obtain information...
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