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Professor Vladilen Fedorovich Minin 70 years old |
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Numerical methods of computer optics |
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Pavelyev V.S. Design of quantized, radially symmetric DOEs |
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158kb |
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Doskolovich L.L., Petrova O.I. Calculation of mirrors for the formation of target directional patterns |
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158kb |
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Kurushina SE, Maksimov VV, Ratis YL. Ray trajectories in a radially gradient medium |
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154kb |
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Sazonnikova NA. Study of radiation reflection in surface elements |
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160kb |
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Kotlyar V.V., Melekhin A.S. Abel transform in the problems of design of gradient optical elements |
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158kb |
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Pavelyev V.S. Optimization of a DOE focusing a Gaussian beam into a focal square contour |
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Kazanskiy N.L., Serafimovich P.G., Kharitonov S.I. Adaptive iterative algorithm for identifying different wave modes in a sonic log |
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Matyunin S.A. Optimization of antireflection coatings of semiconductor optoelectronic elements providing for spectral interaction |
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Technologies and applications of computer optics |
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Volkov A.V., Kazanskiy N.L., Kostyuk G.F., Pavelyev V.S. Dry etching of polycrystalline diamond films |
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Pavelyev V.S., Soifer V.A., Glaser T., Schröter S., Pöhlmann R., Bartelt H. Experimental study of a four-level DOE focusing a Gaussian beam into a circle |
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Bogdan IV, Vygovsky YN, Vygovskaya NY, Zagaynova YS, Zvol EV, Malov AN, Malov SN, Molotsilo VY, Petrov AA, Pidgursky SN, Neupokoeva AV. Holographic simulation of the effect of laser biostimulation and the methods of manufacturing phantom test objects for radiology |
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161kb |
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Golovashkin D.L., Pavelyev V.S., Duparre M., Kononenko V.V. Analysis of light propagation through one-level DOE-fragments with fabrication errors |
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Volkov A.V., Skidanov R.V. The formation of DOE microrelief using the achievements in microelectronics |
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163kb |
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Burdian I.I., Kosyuk V.V., Senokosov E.A., Feshchenko V.S., Feshchenko I.S. Photodiffusion of tungsten in a As2Se3–WO2 system and its application for recording the elements of computer optics |
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162kb |
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Volotovsky S.G., Kazanskiy N.L., Serafimovich P.G., Kharitonov S.I. Software package for the calculation of diffractive optical elements using high-speed computing tools |
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Matyunin S.A. Multicomponent optoelectronic structures of spectral interaction used as adaptive optical elements |
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Poleshchuk A.G., Koronkevich V.P., Korolkov V.P., Sedukhin A.G. Diffractive optics in measuring technologies |
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Murzin S.P. Optimizing the temperature field during laser processing of materials using radiation focusators |
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156kb |
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Minin I.V., Minin O.V. New possibilities of diffractive quasi-optics |
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