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Ляхов Константин Андреевич
(публикации за последние годы)
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2022 |
1. |
K. A. Lyakhov, A. N. Pechen, “Laser and diffusion driven optimal discrimination of similar quantum systems in resonator”, Lobachevskii J. Math., 43:7 (2022), 1693–1703 ; |
2. |
Lyakhov, K. A., “Optimization Criterion for Two-Stage Cascade for Iterative Molybdenum Isotopes Recovery by the method of laser-assisted retardation of condensation(SILARC)”, Journal of Physics: Conference Series, 2147 (2022), 012009 |
3. |
К. А. Ляхов, В. А. Григорьев, Е. Г. Циплакова, “Автоматическое распознавание структур в полупрозрачных движущихся объектах на основе голографической муаровой интерферометрии”, Научн.-техн. вест. информ. технол. мех. опт., 22:5 (2022), 854–858 |
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2021 |
4. |
K. A. Ляхов, A. Н. Печень, “Критерий условной оптимизации для разделения изотопов циркония при помощи метода лазерного торможения конденсации”, Математика квантовых технологий, Сборник статей, Труды МИАН, 313, МИАН, М., 2021, 143–153 (цит.: 1) (цит.: 1); K. A. Lyakhov, A. N. Pechen, “Constrained Optimization Criterion for Zirconium Isotope Separation by the Method of Laser-Assisted Retardation of Condensation”, Proc. Steklov Inst. Math., 313 (2021), 131–141 (cited: 1) (cited: 1) |
5. |
K. A. Lyakhov, A. N. Pechen, “Selective multi-line excitation of isotopologues with similar quantum spectra as a function of gas flow pressure, temperature, and laser pulse spectrum”, AIP Conf. Proc., 2362, 2021, 040008 , 6 pp. ; |
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K. A. Lyakhov, A. N. Pechen, “Enrichment factor for molybdenum isotopes separation by the method of laser-assisted retardation of condensation”, Lobachevskii J. Math., 42:10 (2021), 2392–2400 ; |
7. |
Lyakhov, K. A., Pechen, A.N.,, “Objective Function in the Problem of Optimal Laser-Assisted Separation of Isotopes by the Method of Selective Retardation of Condensation”, Journal of Mathematical Sciences, 252 (2021), 60–64 ; К. А. Ляхов, А. Н. Печень, “Целевая функция в задаче оптимального лазерного разделения изотопов методом селективного торможения”, Квантовая вероятность, Итоги науки и техн. Сер. Соврем. мат. и ее прил. Темат. обз., 151 (2018), 62-66 |
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2020 |
8. |
K. A. Lyakhov, A. N. Pechen, “CO$_2$ laser system design for efficient boron isotope separation by the method of selective laser-assisted retardation of condensation”, Appl. Phys. B, 126 (2020), 141 , 11 pp. (cited: 5) (cited: 7); |
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K. A. Lyakhov, A. N. Pechen, “Evolution of the Enrichment Factor for an Iterative Scheme of Zirconium Isotopes Separation”, Lobachevskii J. Math., 41:12 (2020), 2345–2351 (cited: 1) (cited: 3) (cited: 2); |
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2019 |
10. |
K.A.Lyakhov, A.N.Pechen, “Basic Vacuum Pump System Prerequisites for Boron Isotopes Separation by the Laser Assisted Retardation of Condensation (SILARC) method”, Physical and Chemical Processes in Atomic Systems, XVII International Scientific Conference and School of Young Scholars (Moscow, Russia, 2019, Oct’28-30), NRNU MEPhI, 2019, 67 https://pnasc.mephi.ru/wp-content/uploads/2019/10/tp_final.pdf |
11. |
K. A. Lyakhov, A. N. Pechen, H. J. Lee, “Optimal CO2 laser system design for 11BCl3 excitation by the method of selective laser assisted retardation of condensation”, J. Electr. Eng. Electron. Technol., 8 (2019), 86 ; |
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2018 |
12. |
K. A. Lyakhov, A. N. Pechen, H.-J. Lee, “The efficiency of one-line versus multi-line excitation of boron isotopes within the method of selective laser assisted retardation of condensation”, AIP Advances, 8 (2018), 95325 , 10 pp. (cited: 8) (cited: 9) |
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К. А. Ляхов, А. Н. Печень, “Целевая функция в задаче оптимального лазерного разделения изотопов методом селективного торможения”, Квантовая вероятность, Итоги науки и техн. Сер. Соврем. мат. и ее прил. Темат. обз., 151, ВИНИТИ РАН, М., 2018, 62–66 ; K. A. Lyakhov, A. N. Pechen, “Objective Function in the Problem of Optimal Laser-Assisted Separation of Isotopes by the Method of Selective Retardation of Condensation”, J. Math. Sci. (N. Y.), 252:1 (2021), 60–64 |
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2017 |
14. |
K. A. Lyakhov, H. J. Lee, A. N. Pechen, “Some issues of industrial scale boron isotopes separation by the laser assisted retarded condensation (SILARC) method”, Sep. Purif. Technol., 176:4 (2017), 402–411 (cited: 18) (cited: 22) |
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2016 |
15. |
K. A. Lyakhov, Heon Ju Lee, A. N. Pechen, “Some features of Boron isotopes separation by the laser-assisted retardation of condensation method in multipass irradiation cell implemented as a resonator”, IEEE Journal of Quantum Electronics, 52:12 (2016), 1400208–8 (cited: 5) (cited: 8) |
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2015 |
16. |
K. A. Lyakhov, K. H. Lee, “Some features of experimental setup design for isotopes separation by the laser assisted retardation of condensation method”, J. Laser Appl., 27:2 (2015), 022008 (cited: 10) (cited: 11) |
17. |
K. A. Lyakhov, H. J. Lee, “New Experimental Setup for Boron Isotopes Separation by the Laser Assisted Retardation of Condensation Method”, J. Nanoscience Nanotechnology, 15:11 (2015), 8502–8507 (cited: 5) (cited: 5) |
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2013 |
18. |
K. A. Lyakhov, H. J. Lee, “Basic features of boron isotope separation by SILARC method in the two-step iterative static model”, Appl. Phys. B, 111:2 (2013), 261–272 (cited: 11) (cited: 11) |
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K. A. Lyakhov, H. J. Lee, “Two-step iterative static model for boron isotope separation”, Annals of Nuclear Energy, 54 (2013), 274–280 (cited: 1) (cited: 1) |
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2012 |
20. |
I. N. Mishustin, K. A. Lyakhov, “Baryon deceleration and partonic plasma creation by strong chromofields in ultra-relativistic heavy ion collisions”, Атомная физика, 75:3 (2012), 399–420 (цит.: 4) ; Physics of Atomic Nuclei, 75:3 (2012), 371–392 (cited: 4) (cited: 4) |
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2011 |
21. |
K. A. Lyakhov, H.-J. Lee, I. N. Mishustin, “Baryon stopping and partonic plasma production by strong chromofields”, Physical Review C, 84 (2011), 055202 (cited: 1) (cited: 2) |
22. |
K. A. Lyakhov, H.-J. Lee, “Baryon kinetic energy loss in the color flux tube model”, Physical Review C, 84 (2011), 055206 |
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