The accurate representation of multidimensional potential energy surfaces is a necessary requirement for realistic computer simulations of molecular systems. The continued increase in computer power accompanied by advances in correlated electronic structure methods nowadays enables routine calculations of accurate interaction energies for small systems, which can then be used as references for the development of analytical potential energy functions (PEFs) rigorously derived from many-body (MB) expansions. Building on the accuracy of the MB-pol many-body PEF, we investigate here the performance of permutationally invariant polynomials (PIPs), neural networks, and Gaussian approximation potentials (GAPs) in representing water two-body and th...
Texto completo: acesso restrito. p. 281–288The fitting of ab initio electronic energies of polyatomi...
Despite recent progress, a unified understanding of how ions affect the structure and dynamics of wa...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
The accurate representation of multidimensional potential energy surfaces is a necessary requirement...
The accurate representation of multidimensional potential energy surfaces is a necessary requirement...
A modified, computationally efficient method to provide permutationally invariant polynomial bases f...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
We present a general framework for the development of data-driven many-body (MB) potential energy fu...
We incorporate geometry-dependent distributed multipole and polarizability surfaces into an inductio...
A more flexible neural network (NN) method using the fundamental invariants (FIs) as the input vecto...
A full-dimensional potential energy function (MB-pol) for simulations of water from the dimer to bul...
We incorporate geometry-dependent distributed multipole and polarizability surfaces into an inductio...
Water is ubiquitous in nature. The arrangement and behavior of water molecules aroundsolutes, rangin...
Deep neural network (DNN) potentials have recently gained popularity in computer simulations of a wi...
Texto completo: acesso restrito. p. 281–288The fitting of ab initio electronic energies of polyatomi...
Despite recent progress, a unified understanding of how ions affect the structure and dynamics of wa...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
The accurate representation of multidimensional potential energy surfaces is a necessary requirement...
The accurate representation of multidimensional potential energy surfaces is a necessary requirement...
A modified, computationally efficient method to provide permutationally invariant polynomial bases f...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...
We present a general framework for the development of data-driven many-body (MB) potential energy fu...
We incorporate geometry-dependent distributed multipole and polarizability surfaces into an inductio...
A more flexible neural network (NN) method using the fundamental invariants (FIs) as the input vecto...
A full-dimensional potential energy function (MB-pol) for simulations of water from the dimer to bul...
We incorporate geometry-dependent distributed multipole and polarizability surfaces into an inductio...
Water is ubiquitous in nature. The arrangement and behavior of water molecules aroundsolutes, rangin...
Deep neural network (DNN) potentials have recently gained popularity in computer simulations of a wi...
Texto completo: acesso restrito. p. 281–288The fitting of ab initio electronic energies of polyatomi...
Despite recent progress, a unified understanding of how ions affect the structure and dynamics of wa...
Almost 50 years have passed from the first computer simulations of water, and a large number of mole...