We present the construction of molecular force fields for small molecules (less than 25 atoms) using the recently developed symmetrized gradient-domain machine learning (sGDML) approach [Chmiela et al., Nat. Commun. 9, 3887 (2018) and Chmiela et al., Sci. Adv. 3, e1603015 (2017)]. This approach is able to accurately reconstruct complex high-dimensional potential-energy surfaces from just a few 100s of molecular conformations extracted from ab initio molecular dynamics trajectories. The data efficiency of the sGDML approach implies that atomic forces for these conformations can be computed with high-level wavefunction-based approaches, such as the “gold standard” coupled-cluster theory with single, double and perturbative triple excitations ...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy — a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
We present the construction of molecular force fields for small molecules (less than 25 atoms) using...
We present the construction of molecular force fields for small molecules (less than 25 atoms) using...
We present the construction of molecular force fields for small molecules (less than 25 atoms) using...
Highly accurate force fields are a mandatory requirement to generate predictive simulations. Here we...
Molecular dynamics (MD) simulations employing classical force fields constitute the cornerstone of c...
peer reviewedMolecular dynamics (MD) simulations employing classical force fields constitute the cor...
Molecular dynamics (MD) simulations employing classical force fields constitute the cornerstone of c...
We present an optimized implementation of the recently proposed symmetric gradient domain machine le...
We present an optimized implementation of the recently proposed symmetric gradient domain machine le...
We present an optimized implementation of the recently proposed symmetric gradient domain machine le...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy — a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
We present the construction of molecular force fields for small molecules (less than 25 atoms) using...
We present the construction of molecular force fields for small molecules (less than 25 atoms) using...
We present the construction of molecular force fields for small molecules (less than 25 atoms) using...
Highly accurate force fields are a mandatory requirement to generate predictive simulations. Here we...
Molecular dynamics (MD) simulations employing classical force fields constitute the cornerstone of c...
peer reviewedMolecular dynamics (MD) simulations employing classical force fields constitute the cor...
Molecular dynamics (MD) simulations employing classical force fields constitute the cornerstone of c...
We present an optimized implementation of the recently proposed symmetric gradient domain machine le...
We present an optimized implementation of the recently proposed symmetric gradient domain machine le...
We present an optimized implementation of the recently proposed symmetric gradient domain machine le...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy — a fundamental property of closed classical and quantum mechanical sys...
Using conservation of energy - a fundamental property of closed classical and quantum mechanical sys...