Bacteriochlorophyll and chlorophyll molecules are crucial building blocks of the photosynthetic apparatus in bacteria, algae, and plants. Embedded in transmembrane protein complexes, they are responsible for the primary processes of photosynthesis: excitation energy and charge transfer. Here, we use ab initio many-body perturbation theory within the GW approximation and Bethe−Salpeter equation (BSE) approach to calculate the electronic structure and optical excitations of bacteriochlorophylls a, b, c, d, and e and chlorophylls a and b. We systematically study the effects of the structure, basis set size, partial self-consistency in GW, and the underlying exchange−correlation approximation and compare our calculations with results from time-...
As one of the most significant natural processes providing food and energy for almost all life on th...
Chlorophyll a is the most abundant pigment on Earth responsible for trapping light energy to perform...
High efficiency of light harvesting in photosynthetic pigment-protein complexes is governed by evolu...
Light-harvesting system 2 (LH2) of purple bacteria is one of the most popular antenna complexes used...
The excited-state properties of bacteriochlorophyll (BChl) <i>a</i> in triethylamine, 1-propanol, an...
The ability to accurately compute low-energy excited states of chlorophylls is critically important ...
Light-harvesting system 2 (LH2) of purple bacteria is one of the most popular antenna complexes used...
This research aims to investigate the details of the function of one particular kind of antenna comp...
The GW-Bethe-Salpeter equation (BSE) method is promising for calculating the low-lying excitonic sta...
Light-harvesting systems 2 and 3 (LH2 and LH3) act as antennas for the initial light capture by phot...
Light-harvesting systems 2 and 3 (LH2 and LH3) act as antennas for the initial light capture by phot...
Light-harvesting complex II (LHCII) is a pigment–protein complex present in higher plants and green ...
Photosynthetic organisms have evolved to harvest sunlight at incredible quantum efficiencies, some n...
From time integration of the electron dynamics under a density functional tight binding Hamiltonian ...
First-principles calculations within the framework of real-space time-dependent density functional t...
As one of the most significant natural processes providing food and energy for almost all life on th...
Chlorophyll a is the most abundant pigment on Earth responsible for trapping light energy to perform...
High efficiency of light harvesting in photosynthetic pigment-protein complexes is governed by evolu...
Light-harvesting system 2 (LH2) of purple bacteria is one of the most popular antenna complexes used...
The excited-state properties of bacteriochlorophyll (BChl) <i>a</i> in triethylamine, 1-propanol, an...
The ability to accurately compute low-energy excited states of chlorophylls is critically important ...
Light-harvesting system 2 (LH2) of purple bacteria is one of the most popular antenna complexes used...
This research aims to investigate the details of the function of one particular kind of antenna comp...
The GW-Bethe-Salpeter equation (BSE) method is promising for calculating the low-lying excitonic sta...
Light-harvesting systems 2 and 3 (LH2 and LH3) act as antennas for the initial light capture by phot...
Light-harvesting systems 2 and 3 (LH2 and LH3) act as antennas for the initial light capture by phot...
Light-harvesting complex II (LHCII) is a pigment–protein complex present in higher plants and green ...
Photosynthetic organisms have evolved to harvest sunlight at incredible quantum efficiencies, some n...
From time integration of the electron dynamics under a density functional tight binding Hamiltonian ...
First-principles calculations within the framework of real-space time-dependent density functional t...
As one of the most significant natural processes providing food and energy for almost all life on th...
Chlorophyll a is the most abundant pigment on Earth responsible for trapping light energy to perform...
High efficiency of light harvesting in photosynthetic pigment-protein complexes is governed by evolu...