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AbstractAbstract
[en] Energy dependence of the optical constants of boron carbide in the short period Ru/B4C and Mo/B4C multilayers (MLs) are evaluated from complete reflectivity scans across the boron K edge using the energy-resolved photon-in-photon-out method. Differences between the refractive indices of the B4Cmaterial inside and close to the surface are obtained from the peak profile of the first order ML Bragg peak and the reflection profile near the critical angle of total external reflection close to the surface. Where a Mo/B4C ML with narrow barrier layers appears as a homogeneous ML at all energies, a Ru/B4C ML exhibits another chemical nature of boron at the surface compared to the bulk. From evaluation of the critical angle of total external reflection in the energy range between 184 and 186 eV, we found an enriched concentration of metallic boron inside the Ru-rich layer at the surface, which is not visible in other energy ranges.
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Source
(c) 2010 Optical Society of America; Country of input: International Atomic Energy Agency (IAEA)
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Journal Article
Journal
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BORON COMPOUNDS, BOSONS, CARBIDES, CARBON COMPOUNDS, DIAGRAMS, ELECTROMAGNETIC RADIATION, ELEMENTARY PARTICLES, ELEMENTS, ENERGY RANGE, EV RANGE, INFORMATION, IONIZING RADIATIONS, MASSLESS PARTICLES, METALS, OPTICAL PROPERTIES, PHYSICAL PROPERTIES, PLATINUM METALS, RADIATIONS, REFRACTORY METALS, SEMIMETALS, SURFACE PROPERTIES, TRANSITION ELEMENTS, X RADIATION
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