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- W2022776652 abstract "The apodization within B4C-Ti multilayered monochromators in the Kagan-Afanas'ev-Bormann geometry is checked experimentally. By using the absorption and transparency of B4C and Ti layers, respectively, this apodization manifests itself by narrow and intense first Bragg order coupled with a very low surrounding reflectivity over a large momentum range. Three ion beam sputtering multilayered monochromators, constituted by 9, 25 and 50 (20 Å B4C-120 Å Ti) bilayers, are tested. The first Bragg order reflectivity is about 12.4%, 60.6% and 73.5%, respectively, with a corresponding bandwidth ΔKB/KB of 10%.5%, 5.6% and 1.4%, respectively, with a surrounding reflectivity smaller than 1% (left) and 1% (right). Compared to the classical Ni-Ti multilayered system, the B4C-Ti multilayered system in the Kagan-Afanas'ev-Bormann geometry is better from the monochromation and apodization point of view." @default.
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- W2022776652 date "1994-04-01" @default.
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- W2022776652 title "Monochromation and apodization with Ti-B4C multilayers in neutron optics" @default.
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- W2022776652 doi "https://doi.org/10.1016/0921-4526(94)90167-8" @default.
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