Abstract:
The nonequilibrium density matrix method is used to study the migration of electron
excitations over a crystal. A study is made of the energy relaxation and the coherent properties of excitons that interact with phonons.
Citation:
Yu. B. Gaididei, A. A. Serikov, “Nonequilibrium kinetics of excitons interacting with lattice vibrations”, TMF, 27:2 (1976), 242–253; Theoret. and Math. Phys., 27:2 (1976), 457–465
This publication is cited in the following 7 articles:
Thomas Renger, Volkhard May, Oliver Kühn, “Ultrafast excitation energy transfer dynamics in photosynthetic pigment–protein complexes”, Physics Reports, 343:3 (2001), 137
Yu. B. Gaididei, A. A. Vakhnenko, “Nonequilibrium Kinetics of Exciton Wave Packets in Crystals”, Physica Status Solidi (b), 122:1 (1984), 239
L. N. Christophorov, V. N. Kharkyanen, “Theory of interimpurity transitions in condensed medium”, Physica Status Solidi (b), 116:2 (1983), 415
Yu. B. Gaididei, “Annihilation of excitons in quasi-one-dimensional crystals”, Theoret. and Math. Phys., 48:3 (1981), 831–834
È. G. Petrov, L. N. Khristophorov, “Kinetics of donor-acceptor transition with allowance for vibrational structure”, Theoret. and Math. Phys., 38:3 (1979), 264–269
È. G. Petrov, V. I. Teslenko, “Relaxation in the system of vibrational levels of a harmonic oscillator”, Theoret. and Math. Phys., 38:1 (1979), 87–93
Yu. B. Gaĭdideĭ, V. M. Loktev, A. F. Prikhot'ko, “Excitons in magnetically ordered crystals (Review)”, Soviet Journal of Low Temperature Physics, 3:5 (1977), 263