Search Results - "Krymskii, K. M."

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  1. 1

    Creation of High-Power Technological Nanosecond Frequency-Pulse Solid-State Lasers: Problems and Solutions by Rogalin, V. E., Krymskii, K. M.

    “…A review analysis of the problematic aspects of creating high-power nanosecond frequency-pulse solid-state lasers for use in various technological fields,…”
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    Journal Article
  2. 2

    Several Applications of Diamonds in High-Power Optics and Electronics by Rogalin, V. E., Krymskii, M. I., Krymskii, K. M.

    “…Data on applications of polycrystalline diamonds obtained with the aid of chemical vapor deposition in high-power optics and electronics are presented…”
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    Journal Article
  3. 3

    Optical parametric oscillator based on the periodically poled MgO:LN crystal with 4.1 [mu]m wavelength and varied pulse duration by Andreeva, M. S, Andreeva, N. P, Barashkov, M. S, Mitin, K. V, Shchebetova, N. I, Krymskii, M. I, Krymskii, K. M, Rogalin, V. E, Akhmatkhanov, A. R, Chuvakova, M. A, Shur, V. Ya

    Published in Ferroelectrics (27-05-2016)
    “…The generation of optical parametric oscillator (OPO) at 4.1 μm in the periodically poled MgO doped congruent lithium niobate (MgOLN) single crystal was…”
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    Journal Article
  4. 4

    Optical parametric oscillator based on the periodically poled MgO:LN crystal with 4.1 μm wavelength and varied pulse duration by Andreeva, M. S., Andreeva, N. P., Barashkov, M. S., Mitin, K. V., Shchebetova, N. I., Krymskii, M. I., Krymskii, K. M., Rogalin, V. E., Akhmatkhanov, A. R., Chuvakova, M. A., Shur, V. Ya

    Published in Ferroelectrics (27-05-2016)
    “…The generation of optical parametric oscillator (OPO) at 4.1 μm in the periodically poled MgO doped congruent lithium niobate (MgOLN) single crystal was…”
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    Journal Article
  5. 5

    Prospects for development of the projection X-ray photolithographic technology by Aranchii, S. M., Krymskii, K. M., Krymskii, M. I., Rogalin, V. E.

    “…Practical prospects for the implementation of the projection X-ray photolithographic technology in the wavelength interval 3–30 nm based on a combination of…”
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    Journal Article
  6. 6

    Obtaining images in telescopic systems on observation of objects through turbulent atmosphere by the method of iterative reconstruction of the phase distribution on the basis of the Saxton-Gerschberg algorithm by Bel’dyugin, I. M., Krymskii, M. I., Krymskii, K. M.

    “…An algorithm for reconstruction of the images of objects hidden behind amplitude-phase screens is proposed. This algorithm allows one to abandon wave front…”
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    Journal Article