Generalization to spatially extended systems of the relation between stochastic Liouville equations and generalized master equations

作者: V.M. Kenkre

DOI: 10.1016/0375-9601(78)90447-4

关键词: GeneralizationPhysicsLindblad equationFunction (mathematics)Relation (database)Applied mathematicsStochastic liouville equationMaster equationLiouville field theory

摘要: Abstract Through an exact calculation of the memory function in generalized master equation (GME) which corresponds to a form stochastic Liouville (SLE) used exciton transport, relation is established between GME and SLE, useful translating parameters one theory into other, valid for extended systems such as molecular crystals.

参考文章(7)
V.M. Kenkre, R.S. Knox, Optical spectra and exciton coherence Journal of Luminescence. pp. 187- 193 ,(1976) , 10.1016/0022-2313(76)90078-8
V. M. Kenkre, Relations among theories of excitation transfer Physical Review B. ,vol. 11, pp. 1741- 1745 ,(1975) , 10.1103/PHYSREVB.11.1741
V. M. Kenkre, R. S. Knox, Generalized-master-equation theory of excitation transfer Physical Review B. ,vol. 9, pp. 5279- 5290 ,(1974) , 10.1103/PHYSREVB.9.5279
Richard P. Hemenger, Katja Lakatos‐Lindenberg, Robert M. Pearlstein, Impurity quenching of molcular excitons. III. Partially coherent excitons in linear chains Journal of Chemical Physics. ,vol. 60, pp. 3271- 3277 ,(1974) , 10.1063/1.1681518
I. I. Abram, R. Silbey, Energy transfer and spectral line shapes of impurities in crystals Journal of Chemical Physics. ,vol. 63, pp. 2317- 2328 ,(1975) , 10.1063/1.431683