We present a new method that allows automatic location of multiple local minima on the molecular potential energy surface (PES). Standard geometry optimization procedures converge to a local minimum on the PES. They can be forced to penetrate other regions of the potential surface by applying external forces to nuclei in a molecule. One specific choice of such external forces is proposed in this paper, and preliminary results demonstrating its usefulness are presented
WOS:000295110300016International audienceThe determination and the characterization of important poi...
Formulas have been developed to calculate the forces in a molecular system directly, rather than ind...
A new force-based canonical approach for the accurate generation of multidimensional potential energ...
New developments in the field of theoretical chemistry require the computation of numerous Molecular...
An accurate and efficient method for automated molecular global potential energy surface (PES) const...
We describe the modifications that a spatially varying external load produces on a Born-Oppenheimer ...
Address: Department of Chemistry, The Ohio State University, Columbus OH 43210Author Institution:A s...
A method is presented that can find the global minimum of very complex condensed matter systems. It ...
Abstract: Function optimization is a calculation that pervades much of numerical analysis. In the co...
Methods to construct molecular potential energy surfaces through automated generation of ab initio e...
A new computational technique is described that uses distance constraints to calculate empirical pot...
Explicit or implicit expressions of potential energy surfaces (PES) represent the basis of our abili...
Author Institution: Department of Chemistry, Purdue University, West Lafayette, Indiana 47907; Camb...
The potential energy surface of multi-atomic systems encodes important aspects such as thermodynamic...
A potential energy surface (PES) for a diatomic molecule interacting with a solid surface was constr...
WOS:000295110300016International audienceThe determination and the characterization of important poi...
Formulas have been developed to calculate the forces in a molecular system directly, rather than ind...
A new force-based canonical approach for the accurate generation of multidimensional potential energ...
New developments in the field of theoretical chemistry require the computation of numerous Molecular...
An accurate and efficient method for automated molecular global potential energy surface (PES) const...
We describe the modifications that a spatially varying external load produces on a Born-Oppenheimer ...
Address: Department of Chemistry, The Ohio State University, Columbus OH 43210Author Institution:A s...
A method is presented that can find the global minimum of very complex condensed matter systems. It ...
Abstract: Function optimization is a calculation that pervades much of numerical analysis. In the co...
Methods to construct molecular potential energy surfaces through automated generation of ab initio e...
A new computational technique is described that uses distance constraints to calculate empirical pot...
Explicit or implicit expressions of potential energy surfaces (PES) represent the basis of our abili...
Author Institution: Department of Chemistry, Purdue University, West Lafayette, Indiana 47907; Camb...
The potential energy surface of multi-atomic systems encodes important aspects such as thermodynamic...
A potential energy surface (PES) for a diatomic molecule interacting with a solid surface was constr...
WOS:000295110300016International audienceThe determination and the characterization of important poi...
Formulas have been developed to calculate the forces in a molecular system directly, rather than ind...
A new force-based canonical approach for the accurate generation of multidimensional potential energ...