Mean Field and Collisional Dynamics of Interacting Fermion-Boson systems in a Soluble Model
Natti, E. R. Takano ; Piza, A. F. R de Toledo
arXiv, 9606005 / Harvested from arXiv
A general time-dependent projection technique is applied to the study of the dynamics of quantum correlations in a system consisting of interacting fermionic and bosonic subsystems, described by the Jaynes-Cummings Hamiltonian. The amplitude modulation of the Rabi oscillations which occur for a strong, coherent initial bosonic field is obtained from the spin intrinsic depolarization resulting from collisional corrections to the mean-field approximation.
Publié le : 1996-06-04
Classification:  Quantum Physics,  Mathematical Physics,  Nonlinear Sciences - Exactly Solvable and Integrable Systems,  Nuclear Theory,  Physics - Atomic Physics
@article{9606005,
     author = {Natti, E. R. Takano and Piza, A. F. R de Toledo},
     title = {Mean Field and Collisional Dynamics of Interacting Fermion-Boson systems
  in a Soluble Model},
     journal = {arXiv},
     volume = {1996},
     number = {0},
     year = {1996},
     language = {en},
     url = {http://dml.mathdoc.fr/item/9606005}
}
Natti, E. R. Takano; Piza, A. F. R de Toledo. Mean Field and Collisional Dynamics of Interacting Fermion-Boson systems
  in a Soluble Model. arXiv, Tome 1996 (1996) no. 0, . http://gdmltest.u-ga.fr/item/9606005/