Electron Charge Density: A Clue from Quantum Chemistry for Quantum Foundations
arXiv:2105.11988 · doi:10.1007/s10701-021-00480-7
Abstract
Within quantum chemistry, the electron clouds that surround nuclei in atoms and molecules are sometimes treated as clouds of probability and sometimes as clouds of charge. These two roles, tracing back to Schrödinger and Born, are in tension with one another but are not incompatible. Schrödinger's idea that the nucleus of an atom is surrounded by a spread-out electron charge density is supported by a variety of evidence from quantum chemistry, including two methods that are used to determine atomic and molecular structure: the Hartree-Fock method and density functional theory. Taking this evidence as a clue to the foundations of quantum physics, Schrödinger's electron charge density can be incorporated into many different interpretations of quantum mechanics (and extensions of such interpretations to quantum field theory).
44 pages, 4 figures
References in corpus (8)
- On the Common Structure of Bohmian Mechanics and the Ghirardi-Rimini-Weber Theory
- The "Unromantic Pictures" of Quantum Theory
- Quantum Mechanics as Classical Physics
- The Meaning of the Wave Function: In Search of the Ontology of Quantum Mechanics
- Pilot-wave approaches to quantum field theory
- Our Fundamental Physical Space: An Essay on the Metaphysics of the Wave Function
- What About Quantum Theory? Bayes and the Born Interpretation
- A puzzle for the field ontologists