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Quantum Chemistry and Computing for the Curious

You're reading from  Quantum Chemistry and Computing for the Curious

Product type Book
Published in May 2022
Publisher Packt
ISBN-13 9781803243900
Pages 354 pages
Edition 1st Edition
Languages
Authors (3):
Alex Khan Alex Khan
Profile icon Alex Khan
Keeper L. Sharkey Keeper L. Sharkey
Profile icon Keeper L. Sharkey
Alain Chancé Alain Chancé
Profile icon Alain Chancé
View More author details

Table of Contents (14) Chapters

Preface 1. Chapter 1: Introducing Quantum Concepts 2. Chapter 2: Postulates of Quantum Mechanics 3. Chapter 3: Quantum Circuit Model of Computation 4. Chapter 4: Molecular Hamiltonians 5. Chapter 5: Variational Quantum Eigensolver (VQE) Algorithm 6. Chapter 6: Beyond Born-Oppenheimer 7. Chapter 7: Conclusion 8. Chapter 8: References
9. Chapter 9:Glossary
10. Other Books You May Enjoy Appendix A: Readying Mathematical Concepts 1. Appendix B: Leveraging Jupyter Notebooks on the Cloud 2. Appendix C: Trademarks

4.5. Basis sets

The spatial wave functions, , in the integrals of Section 4.4, Molecular Hamiltonian in the Hartree-Fock orbitals basis, are approximated by linear combinations of several independent basis functions. The form of these functions is inspired by the atomic orbitals of hydrogen-like systems that we introduced in Section 2.1.1, Spherical harmonic functions, which have a radial part as shown in Section 2.2.1, Computing the radial wave functions.

Two classes of approximate basis orbitals that are commonly used are Slater-type orbitals (STOs) based on the Slater determinant introduced in Section 4.2, Fock space, and Cartesian Gaussian-type orbitals (GTOs). These two types of basis functions can be combined as STO-nG, where n is the number of Gaussians used to make the approximation. Ab Initio electronic structure computations are conducted numerically using a basis set of orbitals.

We now detail the structure of these two classes and illustrate them with Python plots...

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