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Effects of Diffusion on Free Precession in Nuclear Magnetic Resonance Experiments

Physical Review · 1954 · Vol. 94(3) · pp. 630–638
H. Y. CarrEdward M. Purcell

Abstract

Nuclear resonance techniques involving free precession are examined, and, in particular, a convenient variation of Hahn's spin-echo method is described. This variation employs a combination of pulses of different intensity or duration ("90-degree" and "180-degree" pulses). Measurements of the transverse relaxation time ${T}_{2}$ in fluids are often severely compromised by molecular diffusion. Hahn's analysis of the effect of diffusion is reformulated and extended, and a new scheme for measuring ${T}_{2}$ is described which, as predicted by the extended theory, largely circumvents the diffusion effect. On the other hand, the free precession technique, applied in a different way, permits a direct measurement of the molecular self-diffusion constant in suitable fluids. A measurement of the self-diffusion constant of water at 25\ifmmode^\circ\else\textdegree\fi{}C is described which yields $D=2.5(\ifmmode\pm\else\textpm\fi{}0.3)\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}5}$ ${\mathrm{cm}}^{2}$/sec, in good agreement with previous determinations. An analysis of the effect of convection on free precession is also given. A null method for measuring the longitudinal relaxation time ${T}_{1}$, based on the unequal-pulse technique, is described.

NMR spectroscopy and applicationsAdvanced NMR Techniques and ApplicationsAdvanced MRI Techniques and ApplicationsPrecessionPhysicsDiffusionRelaxation (psychology)Larmor precessionSpin echoNuclear magnetic resonanceDegree (music)Pulse (music)Fick's laws of diffusion
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References
Relaxation Effects in Nuclear Magnetic Resonance Absorption
Physical Review · 1948 · 6,454 citations
Spin Echoes
Physical Review · 1950 · 4,891 citations
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