Abstract:
A classification of quantum Markovian master equations for spin systems according to the symmetry groups of the surrounding is suggested. The Bloch equations are derived from the general theory of completely positive quantum dynamical semigroups.
Citation:
A. Yu. Artem'ev, “Classification of quantum Markov master equations of spin systems with respect to the symmetry groups of the environment”, TMF, 79:3 (1989), 323–333; Theoret. and Math. Phys., 79:3 (1989), 563–570
This publication is cited in the following 6 articles:
Artem'ev, AY, “Theory of angular-momentum relaxation: Quantum-dynamical semigroup approach”, Physical Review A, 6304:4 (2001), 042103
Artem'ev A.Y., “Theory of angular-momentum relaxation: Quantum-dynamical semigroup approach”, Physical Review A, 63:4 (2001), 042103
A. Yu. Artem'ev, “Quantum beats of light polarizations induced by anisotropic relaxation: A system with angular momentum 3/2”, Theoret. and Math. Phys., 118:2 (1999), 217–226
A. Y. Artemev, “Environment dependence of spectral and dissipative properties of an open spin system”, Phys. Rev. A, 54:4 (1996), 2779
A. Yu. Artem'ev, “Quantum beats of light polarization and condition of complete positivity”, Theoret. and Math. Phys., 87:1 (1991), 353–357
A. Yu. Artem'ev, “Quantum Markov kinetic equation for a spin system with decay”, Theoret. and Math. Phys., 83:3 (1990), 653–658