Magnetic coupling between nuclear motion and nuclear spins in molecules.

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Bibliographic Details
Title: Magnetic coupling between nuclear motion and nuclear spins in molecules.
Authors: Diez, Matthias1,2 (AUTHOR), Krondorfer, Johannes K.1 (AUTHOR), Hirtenfelder, Albert1 (AUTHOR), Hauser, Andreas W.1 (AUTHOR) andreas.w.hauser@gmail.com
Source: Molecular Physics. Apr2026, Vol. 124 Issue 7/8, p1-18. 18p.
Subjects: Nuclear spin, Hyperfine interactions, Magnetic coupling, Nuclear vibrational states, Nuclear magnetic resonance spectroscopy, Molecules
Abstract: Among the possible types of magnetic dipole interactions in molecular systems, couplings between nuclear motion and the nuclear spin have probably received the least attention in molecular spectroscopy. Although very small in comparison to effects related to electron spin, this type of hyperfine interaction plays an important role in the NMR spectroscopy of molecular systems. While measurement and prediction of spin-rotation tensors are a common place, vibrationally induced effects still lack a comprehensive description. In this article we develop a generic, theoretical framework that is well embedded in modern electronic structure theory and inspired by the Breit-Pauli Hamiltonian for electronic interactions, distinguishing between nuclear spin-orbit and spin-other-orbit contributions. We show that the interaction of nuclear spins with pseudorotational excitations of highly symmetric molecules may lead to experimentally accessible hyperfine splittings in NMR spectra, triggered by infrared light. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:Among the possible types of magnetic dipole interactions in molecular systems, couplings between nuclear motion and the nuclear spin have probably received the least attention in molecular spectroscopy. Although very small in comparison to effects related to electron spin, this type of hyperfine interaction plays an important role in the NMR spectroscopy of molecular systems. While measurement and prediction of spin-rotation tensors are a common place, vibrationally induced effects still lack a comprehensive description. In this article we develop a generic, theoretical framework that is well embedded in modern electronic structure theory and inspired by the Breit-Pauli Hamiltonian for electronic interactions, distinguishing between nuclear spin-orbit and spin-other-orbit contributions. We show that the interaction of nuclear spins with pseudorotational excitations of highly symmetric molecules may lead to experimentally accessible hyperfine splittings in NMR spectra, triggered by infrared light. [ABSTRACT FROM AUTHOR]
ISSN:00268976
DOI:10.1080/00268976.2025.2600464