Publications by authors named "M S Mikhailenko"

The paper considers the possibility of using the diamond-silicon carbide composite Skeleton with a technological coating of polycrystalline silicon as a substrate for X-ray mirrors used with powerful synchrotron radiation sources (third+ and fourth generation). Samples were studied after polishing to provide the following surface parameters: root-mean-square flatness ≃ 50 nm, micro-roughness on the frame 2 µm × 2 µm σ ≃ 0.15 nm.

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A series of trianion assemblies of hexaazatriphenylenehexacarbonitrile {HAT(CN)} and hexaazatrinaphthylenehexacarbonitrile {HATNA(CN)} with three Fe(II) or Co(II) ions: {cryptand(K)}·{HATNA(CN)·(FeI)}·2CHCl (1), {cryptand(K)}·{HATNA(CN)·(CoI)}·2CHCl (2), and (CV)·{HAT(CN)·(CoCl)}·0.5(CVCl)·2.5CHCl (3) are synthesized (CVCl = crystal violet).

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Synthesis and study of materials based on bismuth cerates and titanates were carried out. Complex oxides BiYTiO were synthesized by the citrate route; BiCeO and BiYCeO-by the Pechini method. The structural characteristics of materials after conventional sintering at 500-1300 °C were studied.

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Methods for calculating the process of axisymmetric surface shape correction with a wide-aperture ion beam through a forming diaphragm for optical elements with a round and arbitrary border shape are presented. In the case of circular optical elements, an approach based on the separation of the axisymmetric component of the surface shape error from its decomposition by Zernike polynomials is used. In the case of optical elements with an arbitrary border shape (not round), an algorithm for searching the axisymmetric component of the shape error is proposed.

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The article is devoted to the development of an EUV microscope using a wavelength of 13.84 nm. Due to the use of a mirror lens with a large numerical aperture, NA = 0.

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