Copyright © 2020 American Chemical Society. The exciton Hamiltonian of multichromophoric aggregates can be probed by spectroscopic techniques such as linear absorption and circular dichroism. To compare calculated Hamiltonians to experiments, a lineshape theory is needed, which takes into account the coupling of the excitons with inter- and intramolecular vibrations. This coupling is normally introduced in a perturbative way through the cumulant expansion formalism and further approximated by assuming a Markovian exciton dynamics, for example with the modified Redfield theory. Here, we present the implementation of the full cumulant expansion (FCE) formalism (J. Chem. Phys. 142, 2015, 094106) to efficiently compute absorption and circular d...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
Quantum chemical studies on functional (bio)molecular assemblies are hampered by two basic problems:...
We present a computational approach of general applicability to simulate the vibronic line shapes of...
The exciton Hamiltonian of multichromophoric aggregates can be probed by spectroscopic techniques su...
This FORTRAN 90 program implements the Full Cumulant Expansion method for the calculation of absorpt...
The interplay between exciton delocalization and molecular vibrations profoundly affects optical spe...
The physics of aggregates of polar and polarizable donor–acceptor dyes is discussed, extending a pre...
The influence of exciton-vibrational coupling on the optical and transport properties of molecular a...
A theoretical model of exciton dynamics in circular molecular aggregates of light-harvesting bacteri...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
We study the absorption and linear and circular dichroism spectra of molecular aggregates having the...
none6noTo understand the influence of interchromophoric arrangements on photo-induced processes and ...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
This report describes the absorption spectra of molecular aggregates, in which both excitonic and ex...
We study the optical response of Frenkel excitons in molecular J aggregates with a cylindrical geome...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
Quantum chemical studies on functional (bio)molecular assemblies are hampered by two basic problems:...
We present a computational approach of general applicability to simulate the vibronic line shapes of...
The exciton Hamiltonian of multichromophoric aggregates can be probed by spectroscopic techniques su...
This FORTRAN 90 program implements the Full Cumulant Expansion method for the calculation of absorpt...
The interplay between exciton delocalization and molecular vibrations profoundly affects optical spe...
The physics of aggregates of polar and polarizable donor–acceptor dyes is discussed, extending a pre...
The influence of exciton-vibrational coupling on the optical and transport properties of molecular a...
A theoretical model of exciton dynamics in circular molecular aggregates of light-harvesting bacteri...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
We study the absorption and linear and circular dichroism spectra of molecular aggregates having the...
none6noTo understand the influence of interchromophoric arrangements on photo-induced processes and ...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
This report describes the absorption spectra of molecular aggregates, in which both excitonic and ex...
We study the optical response of Frenkel excitons in molecular J aggregates with a cylindrical geome...
Using a Frenkel exciton model, we study the optical absorption spectrum and linear and circular dich...
Quantum chemical studies on functional (bio)molecular assemblies are hampered by two basic problems:...
We present a computational approach of general applicability to simulate the vibronic line shapes of...