Spin Entanglement -- A Unifying Principle for Superconductors and Molecular Bonding

Fuente: arXiv
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Autore principale: O'Hara, Paul
Natura: Preprint
Pubblicazione: 2024
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author O'Hara, Paul
author_facet O'Hara, Paul
contents The spin-statistics theorem is generalized to include quantum entanglement. Specifically, within the context of spin entanglement, we prove that isotropic spin-correlated (ISC) states must occur in pairs. This pairing process can be composed of parallel or anti-parallel states. Consequently, the article proposes using ISC states as a unifying principle to explain better Bose-Einstein condensates, the theory of superconductivity, and molecular and atomic orbitals, all of which involve a pairing process. The theoretical framework is established in sections 1 and 2. The other qualitative sections focus primarily on the experimental evidence to support the theory.
format Preprint
id arxiv_https___arxiv_org_abs_2406_09482
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Spin Entanglement -- A Unifying Principle for Superconductors and Molecular Bonding
O'Hara, Paul
General Physics
The spin-statistics theorem is generalized to include quantum entanglement. Specifically, within the context of spin entanglement, we prove that isotropic spin-correlated (ISC) states must occur in pairs. This pairing process can be composed of parallel or anti-parallel states. Consequently, the article proposes using ISC states as a unifying principle to explain better Bose-Einstein condensates, the theory of superconductivity, and molecular and atomic orbitals, all of which involve a pairing process. The theoretical framework is established in sections 1 and 2. The other qualitative sections focus primarily on the experimental evidence to support the theory.
title Spin Entanglement -- A Unifying Principle for Superconductors and Molecular Bonding
topic General Physics
url https://arxiv.org/abs/2406.09482