We identify an intriguing feature of the electron–vibrational dynamics of molecular systems via a computational examination of trans-polyacetylene oligomers. Here, via the vibronic interactions, the decay of an electron in the conduction band resonantly excites an electron in the valence band, and vice versa, leading to oscillatory exchange of electronic population between two distinct electronic states that lives for up to tens of picoseconds. The oscillatory structure is reminiscent of beating patterns between quantum states and is strongly suggestive of the presence of long-lived molecular electronic coherence. Significantly, however, a detailed analysis of the electronic coherence properties shows that the oscillatory structure arises f...
Coherence, signifying concurrent electron-vibrational dynamics in complex natural and man-made syste...
Knowledge about the electronic motion in molecules is essential for our understanding of chemical re...
Coherent dynamics of coupled molecules are effectively characterized by the two-dimensional electron...
We identify an intriguing feature of the electron–vibrational dynamics of molecular systems via a co...
We identify an intriguing feature of the electron-vibrational dynamics of molecular systems via a co...
Electronic coherencedynamics in trans-polyacetylene oligomers are considered by explicitly computing...
Electronic coherencedynamics in trans-polyacetylene oligomers are considered by explicitly computing...
Using a combination of high-level ab initio electronic structure methods with efficient on-the-fly s...
Quantum superposition of molecular electronic states is very fragile because of thermal energy fluct...
The light-harvesting efficiency of a photoactive molecular complex is largely determined by the prop...
Quantum superposition of molecular electronic states is very fragile because of thermal energy fluct...
In organic molecular assemblies, photo-induced energy and charge transfer is accompanied by signific...
Exposing a molecule to an intense light pulse can create a nonstationary quantum state, thus launchi...
In molecular electronics individual molecules serve as electronic devices. In these systems, electro...
In molecular electronics individual molecules serve as electronic devices. In these systems, electro...
Coherence, signifying concurrent electron-vibrational dynamics in complex natural and man-made syste...
Knowledge about the electronic motion in molecules is essential for our understanding of chemical re...
Coherent dynamics of coupled molecules are effectively characterized by the two-dimensional electron...
We identify an intriguing feature of the electron–vibrational dynamics of molecular systems via a co...
We identify an intriguing feature of the electron-vibrational dynamics of molecular systems via a co...
Electronic coherencedynamics in trans-polyacetylene oligomers are considered by explicitly computing...
Electronic coherencedynamics in trans-polyacetylene oligomers are considered by explicitly computing...
Using a combination of high-level ab initio electronic structure methods with efficient on-the-fly s...
Quantum superposition of molecular electronic states is very fragile because of thermal energy fluct...
The light-harvesting efficiency of a photoactive molecular complex is largely determined by the prop...
Quantum superposition of molecular electronic states is very fragile because of thermal energy fluct...
In organic molecular assemblies, photo-induced energy and charge transfer is accompanied by signific...
Exposing a molecule to an intense light pulse can create a nonstationary quantum state, thus launchi...
In molecular electronics individual molecules serve as electronic devices. In these systems, electro...
In molecular electronics individual molecules serve as electronic devices. In these systems, electro...
Coherence, signifying concurrent electron-vibrational dynamics in complex natural and man-made syste...
Knowledge about the electronic motion in molecules is essential for our understanding of chemical re...
Coherent dynamics of coupled molecules are effectively characterized by the two-dimensional electron...