The accurate calculation of electronic excited states of large and electronically correlated biological chromophores in their complex protein environment still represents a challenge for quantum chemistry. Two ab initio techniques are recently emerging as candidates to correctly tackle this issue: Quantum Monte Carlo (QMC) calculations for the ground state geometry optimization, and Many Body Green's Function Theory (MBGFT) for exited state energies. In the present work we use the Variational Monte Carlo (VMC) to carry out structural optimizations and we present an extension of MBGFT to complex environments, using a Quantum Mechanics/Molecular Mechanics framework. This technique is applied to evaluate the optical properties of the retinal p...
Photoinitiated phenomena play a crucial role in many living organisms. Plants, algae, and bacteria a...
A methodology for the automatic production of quantum mechanical/molecular mechanical (QM/MM) models...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...
The accurate calculation of electronic excited states of large and electronically correlated biologi...
3"The accurate determination of the geometrical details of the dark state of 11-cis Retinal in Rhodo...
ABSTRACT: The accurate determination of the geometrical details of the dark state of 11-cis retinal ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
We employ a variety of highly-correlated approaches including quantum Monte Carlo (QMC) and the n-el...
Retinal is the photon absorbing chromophore of rhodopsin and other visual pigments, enabling the ver...
The accurate determination of the geometrical details of the dark state of 11-<i>cis</i> retinal in ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
We demonstrate that "brute force" quantum-mechanics/molecular- mechanics computations based on ab in...
A methodology for the automatic production of quantum mechanical/molecular mechanical (QM/MM) models...
Rhodopsin proteins are found in a wide range of organisms and perform a variety of functions. Verteb...
The development of theoretical methods in quantum chemistry has targeted for a long time the descrip...
Photoinitiated phenomena play a crucial role in many living organisms. Plants, algae, and bacteria a...
A methodology for the automatic production of quantum mechanical/molecular mechanical (QM/MM) models...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...
The accurate calculation of electronic excited states of large and electronically correlated biologi...
3"The accurate determination of the geometrical details of the dark state of 11-cis Retinal in Rhodo...
ABSTRACT: The accurate determination of the geometrical details of the dark state of 11-cis retinal ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
We employ a variety of highly-correlated approaches including quantum Monte Carlo (QMC) and the n-el...
Retinal is the photon absorbing chromophore of rhodopsin and other visual pigments, enabling the ver...
The accurate determination of the geometrical details of the dark state of 11-<i>cis</i> retinal in ...
Bovine rhodopsin is the most extensively studied retinal protein and is considered the prototype of ...
We demonstrate that "brute force" quantum-mechanics/molecular- mechanics computations based on ab in...
A methodology for the automatic production of quantum mechanical/molecular mechanical (QM/MM) models...
Rhodopsin proteins are found in a wide range of organisms and perform a variety of functions. Verteb...
The development of theoretical methods in quantum chemistry has targeted for a long time the descrip...
Photoinitiated phenomena play a crucial role in many living organisms. Plants, algae, and bacteria a...
A methodology for the automatic production of quantum mechanical/molecular mechanical (QM/MM) models...
We demonstrate that a "brute force" quantum chemical calculation based on an ab initio multiconfigur...