Simulations show time-resolved quantum ghost spectroscopy captures hidden electronic coherence oscillating at 0.7 eV for over 50 fs in PBI-1 trimers via entangled photons and TD-DMRG, plus electronic-to-vibrational coherence transfer at 200 fs.
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Quantum Ghost Spectroscopy Reveals Hidden Electronic Coherence in Molecular Aggregates
Simulations show time-resolved quantum ghost spectroscopy captures hidden electronic coherence oscillating at 0.7 eV for over 50 fs in PBI-1 trimers via entangled photons and TD-DMRG, plus electronic-to-vibrational coherence transfer at 200 fs.