Double step nuclear polarization decay under level anticrossing conditions

Proton spin polarization decay has been measured in paranitrotoluene crystalline powder after a nonadiabatic magnetic field switch from a high polarization field into a low field. At certain magnetic fields, when 14N-1H level anticrossing conditions are satisfied mediated by dipole-dipole interactions, a double step proton polarization decay has been observed. A first step taking place typically in the millisecond range due to polarization transfer is followed by relaxation in the range of tens of seconds. The experiment has been carried out using a homebuilt field cycling relaxometer allowing for sufficiently fast field switching. The observed two step decay is analyzed analytically in terms of the Liouville-von Neumann equation.

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Publication Details

Journal
The Journal of Chemical Physics
Published
2026-09-21
DOI
https://doi.org/10.1063/5.0347367
Primary Topic
Advanced NMR Techniques and Applications
Type
article
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article

Double step nuclear polarization decay under level anticrossing conditions

H.‐J. Stöckmann, F. Fujara, M. Rosenstihl
The Journal of Chemical Physics
Advanced NMR Techniques and Applications
article

Double step nuclear polarization decay under level anticrossing conditions

H.‐J. Stöckmann, F. Fujara, M. Rosenstihl
article en

Abstract

Proton spin polarization decay has been measured in paranitrotoluene crystalline powder after a nonadiabatic magnetic field switch from a high polarization field into a low field. At certain magnetic fields, when 14N-1H level anticrossing conditions are satisfied mediated by dipole-dipole interactions, a double step proton polarization decay has been observed. A first step taking place typically in the millisecond range due to polarization transfer is followed by relaxation in the range of tens of seconds. The experiment has been carried out using a homebuilt field cycling relaxometer allowing for sufficiently fast field switching. The observed two step decay is analyzed analytically in terms of the Liouville-von Neumann equation.

The Journal of Chemical PhysicsVol. 165(11)
Darmstadt University of Applied Sciences (DE), Philipps University of Marburg (DE), Technische Universität Darmstadt (DE)
Openalex Percentile: Top 22%
Advanced NMR Techniques and Applications
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Double step nuclear polarization decay under level anticrossing conditions — H.‐J. Stöckmann, F. Fujara, et al. · The Journal of Chemical Physics (2026) | TGRS Research Map | TGRS