On basis set optimisation in quantum chemistry

07/25/2022
by   Eric Cancès, et al.
0

In this article, we propose general criteria to construct optimal atomic centered basis sets in quantum chemistry. We focus in particular on two criteria, one based on the ground-state one-body density matrix of the system and the other based on the ground-state energy. The performance of these two criteria are then numerically tested and compared on a parametrized eigenvalue problem, which corresponds to a one-dimensional toy version of the ground-state dissociation of a diatomic molecule.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
07/28/2023

Nonlinear reduced basis using mixture Wasserstein barycenters: application to an eigenvalue problem inspired from quantum chemistry

The aim of this article is to propose a new reduced-order modelling appr...
research
04/12/2022

Encodability Criteria for Quantum Based Systems (Technical Report)

This technical report contains the proofs to the lemmata and theorems of...
research
09/11/2020

How reliable and useful is Cabell's Blacklist ? A data-driven analysis

In scholarly publishing, blacklists aim to register fraudulent or decept...
research
06/28/2022

Electronic-structure properties from atom-centered predictions of the electron density

The electron density of a molecule or material has recently received maj...
research
08/31/2023

What can we learn from quantum convolutional neural networks?

We can learn from analyzing quantum convolutional neural networks (QCNNs...
research
09/05/2022

A smooth basis for atomistic machine learning

Machine learning frameworks based on correlations of interatomic positio...
research
10/13/2022

Soft isogeometric analysis of the Bound States of a Quantum Three-Body Problem in 1D

The study of quantum three-body problems has been centered on low-energy...

Please sign up or login with your details

Forgot password? Click here to reset