We present a comparative study of the geometry optimization in the gas phase of acrolein, acetone, methylenecyclopropene, and the propenoic acid anion with special emphasis on their excited-state structures, using quantum Monte Carlo (QMC), multireference perturbation theory (CASPT2 and NEVPT2), second-order approximate coupled cluster (CC2), and time-dependent density functional theory (TDDFT). We find that, for all molecules, the geometries optimized with QMC in its simplest variational (VMC) flavor are in very good agreement with the perturbation results both in the ground and the excited states of either n → π* or π → π* character. Furthermore, the quality of the QMC structures is superior to those obtained with the CC2 method, which ov...
We give an overview of quantum chemical methods with a particular emphasis on the devel-opment of hi...
Quantum Monte Carlo (QMC) is a stochastic method for solving the Schrödinger equation and has been s...
We study the ionization energy, electron affinity, and the π → π- (1La) excitation energy of the ant...
We present a comparative study of the geometry optimization in the gas phase of acrolein, acetone, m...
We present a comparative study of the geometry optimization in the gas phase of acrolein, acetone, m...
We present the first application of quantum Monte Carlo (QMC) in its variational flavor combined wit...
We present a benchmark study of gas phase geometry optimizations in the excited states of carbon mon...
ABSTRACT: We present full structural optimizations of the ground state and of the low lying triplet ...
We present full structural optimizations of the ground state and of the low lying triplet state of t...
We employ quantum Monte Carlo to obtain chemically accurate vertical and adiabatic excitation energi...
The accurate description of molecular excited states is an active frontier in the development of ele...
Abstract We report state-of-the-art quantum Monte Carlo calculations of the singlet n → π ∗ (CO) ver...
We investigate the performance of a class of compact and systematically improvable Jastrow-Slater wa...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
Quantum-chemical computational methods are benchmarked for their ability to describe conical interse...
We give an overview of quantum chemical methods with a particular emphasis on the devel-opment of hi...
Quantum Monte Carlo (QMC) is a stochastic method for solving the Schrödinger equation and has been s...
We study the ionization energy, electron affinity, and the π → π- (1La) excitation energy of the ant...
We present a comparative study of the geometry optimization in the gas phase of acrolein, acetone, m...
We present a comparative study of the geometry optimization in the gas phase of acrolein, acetone, m...
We present the first application of quantum Monte Carlo (QMC) in its variational flavor combined wit...
We present a benchmark study of gas phase geometry optimizations in the excited states of carbon mon...
ABSTRACT: We present full structural optimizations of the ground state and of the low lying triplet ...
We present full structural optimizations of the ground state and of the low lying triplet state of t...
We employ quantum Monte Carlo to obtain chemically accurate vertical and adiabatic excitation energi...
The accurate description of molecular excited states is an active frontier in the development of ele...
Abstract We report state-of-the-art quantum Monte Carlo calculations of the singlet n → π ∗ (CO) ver...
We investigate the performance of a class of compact and systematically improvable Jastrow-Slater wa...
We analyze potentials and limits of the Time- Dependent Density Functional Theory (TD-DFT) approach ...
Quantum-chemical computational methods are benchmarked for their ability to describe conical interse...
We give an overview of quantum chemical methods with a particular emphasis on the devel-opment of hi...
Quantum Monte Carlo (QMC) is a stochastic method for solving the Schrödinger equation and has been s...
We study the ionization energy, electron affinity, and the π → π- (1La) excitation energy of the ant...