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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
E. V. Byzov, L. L. Doskolovich, S. V. Kravchenko, M. A. Moiseev, N. L. Kazanskii, “Design of optical elements for an extended light source”, Computer Optics, 47:1 (2023), 40–47 |
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2020 |
2. |
E. V. Byzov, L. L. Doskolovich, S. V. Kravchenko, N. L. Kazanskii, “Analytical design of refractive optical elements generating a prescribed two-dimensional intensity distribution”, Computer Optics, 44:6 (2020), 883–892 |
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3. |
E. V. Byzov, S. V. Kravchenko, M. A. Moiseev, L. L. Doskolovich, “Optimization method for designing optical elements with an extended light source”, Computer Optics, 44:5 (2020), 712–720 |
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2017 |
4. |
K. V. Andreeva, E. S. Andreev, M. A. Moiseev, S. V. Kravchenko, E. V. Byzov, L. L. Doskolovich, “Design of Extruded refractive optical elements to generate a prescribed intensity distribution”, Computer Optics, 41:6 (2017), 812–819 |
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2016 |
5. |
K. V. Andreeva, M. A. Moiseev, S. V. Kravchenko, L. L. Doskolovich, “Design of optical elements with TIR freeform surface”, Computer Optics, 40:4 (2016), 467–474 |
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6. |
N. L. Kazanskiy, I. S. Stepanenko, A. I. Khaimovich, S. V. Kravchenko, E. V. Byzov, M. A. Moiseev, “Injectional multilens molding parameters optimization”, Computer Optics, 40:2 (2016), 203–214 |
55
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2015 |
7. |
S. V. Kravchenko, E. V. Byzov, M. A. Moiseev, L. L. Doskolovich, “Design of optical elements with two refractive surfaces to generate a prescribed intensity distribution”, Computer Optics, 39:4 (2015), 508–514 |
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2014 |
8. |
L. L. Doskolovich, M. A. Moiseev, E. V. Byzov, S. V. Kravchenko, “Computation of light field eikonal to focus into a set of points”, Computer Optics, 38:3 (2014), 443–448 |
9. |
S. V. Kravchenko, M. A. Moiseev, L. L. Doskolovich, “Design of refractive optical elements with two free-form surfaces for generation of prescribed illuminance distribution”, Computer Optics, 38:3 (2014), 435–442 |
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