EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE

We present a simple analytical treatment of the electron paramagnetic resonance (EPR) spectra of spin-correlated radical pairs, including the zero-quantum coherence with which they are created. We concentrate on the time dependence of the spectrum of a prototype radical pair, with exchange and dipol...

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Main Authors: Zwanenburg, G, Hore, P
Format: Journal article
Published: 1993
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author Zwanenburg, G
Hore, P
author_facet Zwanenburg, G
Hore, P
author_sort Zwanenburg, G
collection OXFORD
description We present a simple analytical treatment of the electron paramagnetic resonance (EPR) spectra of spin-correlated radical pairs, including the zero-quantum coherence with which they are created. We concentrate on the time dependence of the spectrum of a prototype radical pair, with exchange and dipolar couplings but no nuclei, in transient nutation experiments with a without a delay between the formation of the pair and the application of the microwave field. We show how the zero-quantum coherence manifests itself and suggest how it may be turned to advantage. An appendix describes the singlet-triplet interconversion of radical pairs in the language of product operators. © 1993.
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spelling oxford-uuid:14ac57b9-804a-4908-aaec-4f4070cc9f7a2022-03-26T10:21:09ZEPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCEJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:14ac57b9-804a-4908-aaec-4f4070cc9f7aSymplectic Elements at Oxford1993Zwanenburg, GHore, PWe present a simple analytical treatment of the electron paramagnetic resonance (EPR) spectra of spin-correlated radical pairs, including the zero-quantum coherence with which they are created. We concentrate on the time dependence of the spectrum of a prototype radical pair, with exchange and dipolar couplings but no nuclei, in transient nutation experiments with a without a delay between the formation of the pair and the application of the microwave field. We show how the zero-quantum coherence manifests itself and suggest how it may be turned to advantage. An appendix describes the singlet-triplet interconversion of radical pairs in the language of product operators. © 1993.
spellingShingle Zwanenburg, G
Hore, P
EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE
title EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE
title_full EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE
title_fullStr EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE
title_full_unstemmed EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE
title_short EPR OF SPIN-CORRELATED RADICAL PAIRS - ANALYTICAL TREATMENT OF SELECTIVE EXCITATION INCLUDING ZERO-QUANTUM COHERENCE
title_sort epr of spin correlated radical pairs analytical treatment of selective excitation including zero quantum coherence
work_keys_str_mv AT zwanenburgg eprofspincorrelatedradicalpairsanalyticaltreatmentofselectiveexcitationincludingzeroquantumcoherence
AT horep eprofspincorrelatedradicalpairsanalyticaltreatmentofselectiveexcitationincludingzeroquantumcoherence