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PUBMED FOR HANDHELDS

Journal Abstract Search


658 related items for PubMed ID: 21073214

  • 1. Iterative linearized density matrix propagation for modeling coherent excitation energy transfer in photosynthetic light harvesting.
    Huo P, Coker DF.
    J Chem Phys; 2010 Nov 14; 133(18):184108. PubMed ID: 21073214
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  • 2. Influence of environment induced correlated fluctuations in electronic coupling on coherent excitation energy transfer dynamics in model photosynthetic systems.
    Huo P, Coker DF.
    J Chem Phys; 2012 Mar 21; 136(11):115102. PubMed ID: 22443796
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  • 3. Influence of site-dependent pigment-protein interactions on excitation energy transfer in photosynthetic light harvesting.
    Rivera E, Montemayor D, Masia M, Coker DF.
    J Phys Chem B; 2013 May 09; 117(18):5510-21. PubMed ID: 23597258
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  • 4. Non-Hermitian exciton dynamics in a photosynthetic unit system.
    Thilagam A.
    J Chem Phys; 2012 Feb 14; 136(6):065104. PubMed ID: 22360224
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  • 5. Modified scaled hierarchical equation of motion approach for the study of quantum coherence in photosynthetic complexes.
    Zhu J, Kais S, Rebentrost P, Aspuru-Guzik A.
    J Phys Chem B; 2011 Feb 17; 115(6):1531-7. PubMed ID: 21268616
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  • 13. Consistent schemes for non-adiabatic dynamics derived from partial linearized density matrix propagation.
    Huo P, Coker DF.
    J Chem Phys; 2012 Dec 14; 137(22):22A535. PubMed ID: 23249072
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  • 15. On the adequacy of the Redfield equation and related approaches to the study of quantum dynamics in electronic energy transfer.
    Ishizaki A, Fleming GR.
    J Chem Phys; 2009 Jun 21; 130(23):234110. PubMed ID: 19548714
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  • 20. Efficient energy transfer in light-harvesting systems: quantum-classical comparison, flux network, and robustness analysis.
    Wu J, Liu F, Ma J, Silbey RJ, Cao J.
    J Chem Phys; 2012 Nov 07; 137(17):174111. PubMed ID: 23145721
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