Publication | Closed Access
Tunneling-Assisted Nuclear Spin-Lattice Relaxation
78
Citations
14
References
1969
Year
Relaxation ProcessQuantum ScienceSpintronicsEngineeringTunneling MicroscopyPhysicsNatural SciencesCondensed Matter PhysicsMagnetic ResonanceApplied PhysicsTorsional-oscillator Ground StatePhysical ChemistryTunneling-assisted ProcessHindered Methyl GroupQuantum ChemistrySpin DynamicSpin Phenomenon
The tunneling splitting of the torsional-oscillator ground state of a hindered methyl group is taken into account in calculating the temperature dependence of the proton spin-lattice relaxation time. Thermal vibrations cause spin-independent transitions leading to a fluctuation in the sign of the splitting parameter. It is predicted that a second maximum in $T_{1}^{\ensuremath{-}1}$ may occur at low temperature due to a tunneling-assisted process. This effect is detected in some methyl-substituted benzenes in good agreement with the theory.
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