none4siFirst-principles simulations of two-dimensional electronic spectroscopy in the ultraviolet region (2DUV) require computationally demanding multiconfigurational approaches that can resolve doubly excited and charge transfer states, the spectroscopic fingerprints of coupled UV-active chromophores. Here, we propose an efficient approach to reduce the computational cost of accurate simulations of 2DUV spectra of benzene, phenol, and their dimer (i.e., the minimal models for studying electronic coupling of UV-chromophores in proteins). We first establish the multiconfigurational recipe with the highest accuracy by comparison with experimental data, providing reference gas-phase transition energies and dipole moments that can be used to co...
Nonlinear electronic spectroscopies represent one of the most powerful techniques to study complex m...
none7siIn this discussion we present a methodology to describe spectral lineshape from first princip...
The simulation of ultrafast photoinduced processes is a fundamental step towards the understanding o...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
ABSTRACT: Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
none5siTwo-dimensional electronic spectroscopy (2DES) is a cutting-edge technique for investigating ...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
none10siThe SOS//QM/MM [ Rivalta et al., Int. J. Quant. Chem., 2014, 114, 85] method consists of an ...
The SOS//QM/MM [Rivalta et al., Int. J. Quant. Chem., 2014, 114, 85] method consists of an arsenal o...
A computational strategy to simulate two-dimensional electronic spectra (2DES) is introduced, which ...
Recently, two-dimensional (2D) electronic spectroscopy has become an important tool to unravel the e...
The electronic transitions of indole, the aromatic UV chromophore of the amino acid tryptophan, are ...
A computational strategy to simulate two-dimensional electronic spectra (2DES) is introduced, which ...
Nonlinear electronic spectroscopies represent one of the most powerful techniques to study complex m...
none7siIn this discussion we present a methodology to describe spectral lineshape from first princip...
The simulation of ultrafast photoinduced processes is a fundamental step towards the understanding o...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
ABSTRACT: Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
none5siTwo-dimensional electronic spectroscopy (2DES) is a cutting-edge technique for investigating ...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
none10siThe SOS//QM/MM [ Rivalta et al., Int. J. Quant. Chem., 2014, 114, 85] method consists of an ...
The SOS//QM/MM [Rivalta et al., Int. J. Quant. Chem., 2014, 114, 85] method consists of an arsenal o...
A computational strategy to simulate two-dimensional electronic spectra (2DES) is introduced, which ...
Recently, two-dimensional (2D) electronic spectroscopy has become an important tool to unravel the e...
The electronic transitions of indole, the aromatic UV chromophore of the amino acid tryptophan, are ...
A computational strategy to simulate two-dimensional electronic spectra (2DES) is introduced, which ...
Nonlinear electronic spectroscopies represent one of the most powerful techniques to study complex m...
none7siIn this discussion we present a methodology to describe spectral lineshape from first princip...
The simulation of ultrafast photoinduced processes is a fundamental step towards the understanding o...