Basic mechanisms in the laser control of non-Markovian dynamics

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TitreBasic mechanisms in the laser control of non-Markovian dynamics
Type de publicationJournal Article
Year of Publication2018
AuteursPuthumpally-Joseph R., Mangaud E., Chevet V., Desouter-Lecomte M., Sugny D., Atabek O.
JournalPHYSICAL REVIEW A
Volume97
Pagination033411
Date PublishedMAR 27
Type of ArticleArticle
ISSN2469-9926
Résumé

Referring to a Fano-type model qualitative analogy we develop a comprehensive basic mechanism for the laser control of the non-Markovian bath response and fully implement it in a realistic control scheme, in strongly coupled open quantum systems. Converged hierarchical equations of motion are worked out to numerically solve the master equation of a spin-boson Hamiltonian to reach the reduced electronic density matrix of a heterojunction in the presence of strong terahertz laser pulses. Robust and efficient control is achieved increasing by a factor of 2 the non-Markovianity measured by the time evolution of the volume of accessible states. The consequences of such fields on the central system populations and coherence are examined, putting the emphasis on the relation between the increase of non-Markovianity and the slowing down of decoherence processes.

DOI10.1103/PhysRevA.97.033411