30 citations to https://www.mathnet.ru/rus/rm9835
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S. Hu, C. Chen, D. Dong, “Deep reinforcement learning for control design of quantum gates”, 13th Asian Control Conference (ASCC) (Jeju, Republic of Korea, 2022), 2022, 2367–2372
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E. N. Evans, Z. Wang, A. G. Frim, M. R. DeWeese, E. A. Theodorou, “Learning quantum-state feedback control with backpropagation-free stochastic optimization”, Phys. Rev. A, 106:5 (2022), 052405
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О. В. Моржин, A. Н. Печень, “О множествах достижимости и управляемости в задаче оптимального быстродействия для открытой двухуровневой квантовой системы”, Математика квантовых технологий, Сборник статей, Труды МИАН, 313, МИАН, М., 2021, 161–177 ; Oleg V. Morzhin, Alexander N. Pechen, “On Reachable and Controllability Sets for Minimum-Time Control of an Open Two-Level Quantum System”, Proc. Steklov Inst. Math., 313 (2021), 149–164
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V. Rezvani, A. T. Rezakhani, “Coherent dynamical control of quantum processes”, Phys. Rev. A, 104:1 (2021), 012215
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Oleg V. Morzhin, Alexander N. Pechen, MIPT (PHYSTECH) - QUANT 2020, 2362, MIPT (PHYSTECH) - QUANT 2020, 2021, 060003
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O. V. Morzhin, A. N. Pechen, “Maximization of the uhlmann-jozsa fidelity for an open two-level quantum system with coherent and incoherent controls”, Phys. Part. Nuclei, 51:4 (2020), 464–469
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Sh. Cong, L. Zhou, F. Meng, “Lyapunov-based unified control method for closed quantum systems”, J. Frankl. Inst.-Eng. Appl. Math., 357:14 (2020), 9220–9247
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A. N. Pechen, O. V. Morzhin, “Machine learning for finding suboptimal final times and coherent and incoherent controls for an open two-level quantum system”, Lobachevskii J. Math., 41:12 (2020), 2353–2368
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F. Schäfer, M. Kloc, Ch. Bruder, N. Lörch, “A Differentiable Programming Method For Quantum Control”, Mach. Learn. Sci. Technol., 1:3 (2020), 035009
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O. V. Morzhin, A. N. Pechen, “Maximization of the overlap between density matrices for a two-level open quantum system driven by coherent and incoherent controls”, Lobachevskii J. Math., 40:10 (2019), 1532–1548