106 citations to https://www.mathnet.ru/rus/epl1
-
A. I. Trubilko, A. M. Basharov, “Nonresonant Processes as a Basis for the Formation of New Relaxation Channels in the Theory of Quantum Optical Systems”, J. Exp. Theor. Phys., 130:1 (2020), 62
-
Jianying Du, Wei Shen, Xin Zhang, Shanhe Su, Jincan Chen, “Quantum-dot heat engines with irreversible heat transfer”, Phys. Rev. Research, 2:1 (2020)
-
F. Benatti, R. Floreanini, L. Memarzadeh, “Bath-assisted transport in a three-site spin chain: Global versus local approach”, Phys. Rev. A, 102:4 (2020)
-
А. Е. Теретёнков, “Точная немарковская эволюция с несколькими резервуарами”, ЭЧАЯ, 51:4 (2020), 511–522 ; A. E. Teretenkov, “Exact Non-Markovian Evolution with Several Reservoirs”, Phys. Part. Nucl., 51:4 (2020), 479–484
-
Marco Cattaneo, Gian Luca Giorgi, Sabrina Maniscalco, Roberta Zambrini, “Local versus global master equation with common and separate baths: superiority of the global approach in partial secular approximation”, New J. Phys., 21:11 (2019), 113045
-
С. В. Козырев, “Модель вибронов в квантовом фотосинтезе как аналог модели лазера”, Труды МИАН, 306 (2019), 158–169 ; S. V. Kozyrev, “Model of Vibrons in Quantum Photosynthesis as an Analog of a Model of Laser”, Proc. Steklov Inst. Math., 306 (2019), 145–156
-
A. S. Trushechkin, “Higher-order Corrections to the Redfield Equation with Respect to the System-bath Coupling Based on the Hierarchical Equations of Motion”, Lobachevskii J. Math., 40:10 (2019), 1606–1618
-
A. I. Trubilko, A. M. Basharov, “The Effective Hamiltonian Method in the Thermodynamics of Two Resonantly Interacting Quantum Oscillators”, J. Exp. Theor. Phys., 129:3 (2019), 339
-
А. Е. Теретёнков, “Метод псевдомод и вибронные немарковские эффекты в светособирающих комплексах”, Труды МИАН, 306 (2019), 258–272 ; A. E. Teretenkov, “Pseudomode Approach and Vibronic Non-Markovian Phenomena in Light-Harvesting Complexes”, Proc. Steklov Inst. Math., 306 (2019), 242–256
-
Xiansong Xu, Juzar Thingna, Chu Guo, Dario Poletti, “Many-body open quantum systems beyond Lindblad master equations”, Phys. Rev. A, 99:1 (2019)