11 citations to https://www.mathnet.ru/eng/aipad1
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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
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V. B. Laptev, G. N. Makarov, A. N. Petin, E. A. Ryabov, “Collisional Radiative Involvement of Molecules into Resonance with the IR Laser Field in a Two-Component Molecular Medium”, J. Exp. Theor. Phys., 135:1 (2022), 48
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Oleg V. Morzhin, Alexander N. Pechen, “Minimal Time Generation of Density Matrices for a Two-Level Quantum System Driven by Coherent and Incoherent Controls”, Internat. J. Theoret. Phys., 60 (2021), 576–584
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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), 40008–6
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G. N. Makarov, A. N. Petin, “Laser Isotope-Selective IR Dissociation of Molecules with a Small Isotopic Shift in Absorption Spectra in Nonequilibrium Thermodynamic Shock Conditions”, J. Exp. Theor. Phys., 132:2 (2021), 233
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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
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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
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G. N. Makarov, A. N. Petin, “Isotope-selective infrared laser dissociation of molecules with a small isotopic shift in a gas-dynamically cooled molecular flow interacting with a solid surface”, JETP Letters, 111:6 (2020), 325–332
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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
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A. N. Petin, G. N. Makarov, “Infrared laser-induced isotope-selective dissociation of mixed (CF<sub>3</sub>Br) <sub>m</sub>Ar<sub>n</sub> van der Waals clusters”, Quantum Electron., 49:6 (2019), 593–599