Charge Separation in Donor–C<sub>60</sub> Complexes with Real-Time Green Functions: The Importance of Nonlocal Correlations

Emil Viñas Boström(Lund University), Anders Mikkelsen(Lund University), Claudio Verdozzi(Lund University), Enrico Perfetto(Institute of Structure of Matter), Gianluca Stefanucci(Istituto Nazionale di Fisica Nucleare, Roma Tor Vergata)
Nano Letters
December 21, 2017
Cited by 45Open Access
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Abstract

complexes modeled by a Pariser-Parr-Pople Hamiltonian. The NEGF results are compared to mean-field Hartree-Fock (HF) calculations to disentangle the role of correlations. Initial benchmarking against numerically highly accurate time-dependent density matrix renormalization group calculations verifies the accuracy of NEGF. We then find that charge-transfer (CT) excitons partially decay into charge separated (CS) states if dynamical nonlocal correlation corrections are included. This CS process occurs in ∼10 fs after photoexcitation. In contrast, the probability of exciton recombination is almost 100% in HF simulations. These results are largely unaffected by nuclear vibrations; the latter become however essential whenever level misalignment hinders the CT process. The robust nature of our findings indicates that ultrafast CS driven by correlation-induced decoherence may occur in many organic nanoscale systems, but it will only be correctly predicted by theoretical treatments that include time-nonlocal correlations.


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