Journal of Physics A: Mathematical and Theoretical, 2023, Volume 56, Issue 30, Article Number 305303, 26 pp. DOI: https://doi.org/10.1088/1751-8121/ace13f(Mi jpha44)
This article is cited in 21 scientific papers (total in 21 papers)
GRAPE optimization for open quantum systems with time-dependent decoherence rates driven by coherent and incoherent controls
This publication is cited in the following 21 articles:
Ahmed F Fouad, Akram Youssry, Ahmed El-Rafei, Sherif Hammad, “Model-free distortion canceling and control of quantum devices”, Quantum Sci. Technol., 10:1 (2025), 015002
Jack Y. Araz, Siddhanth Bhowmick, Matt Grau, Thomas J. McEntire, Felix Ringer, “State preparation of lattice field theories using quantum optimal control”, Phys. Rev. D, 111:3 (2025)
S. I. Doronin, E. B. Fel'dman, A. I. Zenchuk, “Two-level control over quantum state creation via entangled equal-probability state”, Quantum Inf Process, 24:2 (2025)
Zi-Jie Chen, Hongwei Huang, Lida Sun, Qing-Xuan Jie, Jie Zhou, Ziyue Hua, Yifang Xu, Weiting Wang, Guang-Can Guo, Chang-Ling Zou, Luyan Sun, Xu-Bo Zou, “Robust and optimal control of open quantum systems”, Sci. Adv., 11:9 (2025)
E. B. Fel'dman, A. N. Pechen, A. I. Zenchuk, “Optimal remote restoring of quantum states in communication lines via local magnetic field”, Phys. Scr., 99 (2024), 25112–16
Oleg V. Morzhin, Alexander N. Pechen, “Control of the von Neumann entropy for an open two-qubit system using coherent and incoherent drives”, Entropy, 26:1 (2024), 36–22
Rytis Maskeliūnas, Robertas Damaševičius, 2024 6th International Conference on Computing and Informatics (ICCI), 2024, 361
Philippe Lewalle, Yipei Zhang, K. Birgitta Whaley, “Optimal Zeno Dragging for Quantum Control: A Shortcut to Zeno with Action-Based Scheduling Optimization”, PRX Quantum, 5:2 (2024)
O. V. Morzhin, A. N. Pechen, “Generation of C-NOT, SWAP, and C-Z Gates for two qubits using coherent and incoherent controls and stochastic optimization”, Lobachevskii J. Math., 45:2 (2024), 728–740
Oleg V. Morzhin, Alexander N. Pechen, “Using and Optimizing Time-Dependent Decoherence Rates and Coherent Control for a Qutrit System”, Proc. Steklov Inst. Math., 324 (2024), 153–168
Q Ansel, E Dionis, F Arrouas, B Peaudecerf, S Guérin, D Guéry-Odelin, D Sugny, “Introduction to theoretical and experimental aspects of quantum optimal control”, J. Phys. B: At. Mol. Opt. Phys., 57:13 (2024), 133001
G. A. Bochkin, S. I. Doronin, E. B. Fel'dman, E. I. Kuznetsova, I. D. Lazarev, A. N. Pechen, A. I. Zenchuk, “Some Aspects of Remote State Restoring in State Transfer Governed by XXZ-Hamiltonian”, Lobachevskii J Math, 45:3 (2024), 972
A. N. Pechen, V. N. Petruhanov, O. V. Morzhin, B. O. Volkov, “Control landscapes for high-fidelity generation of C-NOT and C-PHASE gates with coherent and environmental driving”, Eur. Phys. J. Plus, 139 (2024), 411
Aviv Aroch, Ronnie Kosloff, Shimshon Kallush, “Mitigating controller noise in quantum gates using optimal control theory”, Quantum, 8 (2024), 1482
Carlos Ortega-Taberner, Eoin O'Neill, Eoin Butler, Gerald E. Fux, P. R. Eastham, “Unifying methods for optimal control in non-Markovian quantum systems via process tensors”, The Journal of Chemical Physics, 161:12 (2024)
N. A. Tashkeev, A. I. Zenchuk, “Remote restoring of (0,1)-excitation states and concurrence scaling”, Int. J. Quantum Inform., 22:06 (2024)
A. N. Pechen, “Quantum Control by the Environment: Turing Uncomputability, Optimization over Stiefel Manifolds, Reachable Sets, and Incoherent GRAPE”, Russian Microelectronics, 52 (2023), 419–423
Vadim N. Petruhanov, Alexander N. Pechen, “Quantum control landscapes for generation of H and T gates in an open qubit with both coherent and environmental drive”, Photonics, 10:11 (2023), 1200–19
Sergei V. Kozyrev, Alexander N. Pechen, “Amplification of quantum transfer and quantum ratchet”, Phys. Scr., 98:12 (2023), 125122–12
Gayatri Singh, Kavita Dorai, Arvind, “Experimental quantum state transfer of an arbitrary single-qubit state on a cycle with four vertices using a coined quantum random walk”, Quantum Inf Process, 22:11 (2023)