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Orbital-resolved imaging of coherent femtosecond exciton dynamics in coupled molecules

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arxiv 2507.00830 v1 pith:WZJSC6EN submitted 2025-07-01 physics.optics quant-ph

Orbital-resolved imaging of coherent femtosecond exciton dynamics in coupled molecules

classification physics.optics quant-ph
keywords moleculesexcitonexcitonscoherentdynamicsimagingcoherencecontrol
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Optical excitation and control of excitonic wavepackets in organic molecules is the basis to energy conversion processes. To gain insights into such processes, it is essential to establish the relationship between the coherence timescales of excitons with the electronic inhomogeneity in the molecules, as well as the influence of intermolecular interactions on exciton dynamics. Here, we demonstrate orbital-resolved imaging of optically induced coherent exciton dynamics in single copper napthalocyanine (CuNc) molecules, and selective coherent excitation of dark and bright triplet excitons in coupled molecular dimers. Ultrafast photon-induced tunneling current enabled atomic-scale imaging and control of the excitons in resonantly excited molecules by employing excitonic wavepacket interferometry. Our results reveal an ultrafast exciton coherence time of ~ 70 fs in a single molecule, which decreases for the triplet excitons in interacting molecules.

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