Obtaining the exciton dynamics of large photosynthetic complexes by using mixed quantum mechanics/molecular mechanics (QM/MM) is computationally demanding. We propose a machine learning technique, multi-layer perceptrons, as a tool to reduce the time required to compute excited state energies. With this approach we predict time-dependent density functional theory (TDDFT) excited state energies of bacteriochlorophylls in the Fenna-Matthews-Olson (FMO) complex. Additionally we compute spectral densities and exciton populations from the predictions. Different methods to determine multi-layer perceptron training sets are introduced, leading to several initial data selections. In addition, we compute spectral densities and exciton populations. O...
We present progress toward a first-principles parametrization of the Hamiltonian of the Fenna–Matthe...
Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a...
International audienceTheoretical simulations of electronic excitations and associated processes in ...
In the first part of this dissertation, we investigate on the presence of quantum effects in the exc...
A well-known approach to describe the dynamics of an open quantum system is to compute the master eq...
Photosynthetic processes are driven by sunlight. Too little of it and the photosynthetic machinery c...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
Authors: Edoardo Cignoni, Lorenzo Cupellini, Benedetta Mennucci Machine-learning models for a fast ...
The solar energy is one of the most successful alternative energy sources because of its unlimited a...
Machine learning (ML) approximations to density functional theory (DFT) potential energy surfaces (P...
Studies on light-harvesting (LH) systems have attracted much attention after the finding of long-liv...
Photosynthetic organisms have evolved to harvest sunlight at incredible quantum efficiencies, some n...
Photosynthetic organisms have evolved to harvest sunlight at incredible quantum efficiencies, some n...
<p>In this folder we report the data of our paper, recently posted on the arXiv. In particular we pr...
Quantum biology is a relatively new research area which investigates the rules that quantum mechanic...
We present progress toward a first-principles parametrization of the Hamiltonian of the Fenna–Matthe...
Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a...
International audienceTheoretical simulations of electronic excitations and associated processes in ...
In the first part of this dissertation, we investigate on the presence of quantum effects in the exc...
A well-known approach to describe the dynamics of an open quantum system is to compute the master eq...
Photosynthetic processes are driven by sunlight. Too little of it and the photosynthetic machinery c...
The processes which occur after molecules absorb light underpin an enormous range of fundamental tec...
Authors: Edoardo Cignoni, Lorenzo Cupellini, Benedetta Mennucci Machine-learning models for a fast ...
The solar energy is one of the most successful alternative energy sources because of its unlimited a...
Machine learning (ML) approximations to density functional theory (DFT) potential energy surfaces (P...
Studies on light-harvesting (LH) systems have attracted much attention after the finding of long-liv...
Photosynthetic organisms have evolved to harvest sunlight at incredible quantum efficiencies, some n...
Photosynthetic organisms have evolved to harvest sunlight at incredible quantum efficiencies, some n...
<p>In this folder we report the data of our paper, recently posted on the arXiv. In particular we pr...
Quantum biology is a relatively new research area which investigates the rules that quantum mechanic...
We present progress toward a first-principles parametrization of the Hamiltonian of the Fenna–Matthe...
Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a...
International audienceTheoretical simulations of electronic excitations and associated processes in ...