Relaxation mechanisms
Nuclear magnetic resonance

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P2880 V4 Article

Relaxation mechanisms
Nuclear magnetic resonance

Authors : Nicole PLATZER, Laurence DALLERY

Review date: January 10, 2024 | Lire en français

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4. Relaxation mechanisms

In most cases, relaxation results from the interaction between a core's magnetic moment and a fluctuating local magnetic field BL(t).

Longitudinal (or spin-lattice) relaxation concerns the Mz component of magnetization. It is associated with an energy transfer with the lattice, a term that designates the entire environment of the nucleus under consideration. The fluctuating magnetic field BL(t) has a role analogous to that of the coherent radio-frequency field B1 if the range of frequencies associated with the Bx, By components of BL(t) satisfies the resonance condition for the type of nucleus under study. It then causes a nuclear spin transition. It should be noted that BL(t), an incoherent field, cannot create coherences.

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