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Feasibility of Testing Paramagnetic Materials by Magnetic Resonance Methods: I. Method of Low-Resolution Proton Magnetic Resonance

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Abstract

The paper reports on underlying principles of a semiempirical method developed by constructing a generalized correlation function for interacting magnetic moments of protons. The method enables one to calculate shapes of magnetic resonance lines that are intermediate between the Lorentzian and Gaussian profiles, which is typical of real systems containing protons. The method is a more efficient practical implementation of the proton resonance technique, which can be applied to the testing and diagnostics of paramagnetic materials and bodies.

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REFERENCES

  1. Abragam, A.A., The Principles of Nuclear Magnetism, Oxford, 1961.

  2. Al'tshuler, S.A. and Kozyrev, B.M., Elektronnyi paramagnitnyi rezonans soedinenii elementov promezhutochnykh grupp (Electron Spin Resonance of Compounds of Elements of Transitional Groups), Moscow: Nauka, 1972.

    Google Scholar 

  3. Lösche, A., Nuclear Induction. Translated into Russian under the title Yadernaya induktsiya, Moscow: Inostrannaya Literatura, 1963.

    Google Scholar 

  4. Aleksandrov, I.A., Teoriya magnitnoi relaksatsii. Relaksatsiya v zhidkikh i tverdykh nemetallicheskikh paramagnetikakh (Theory of Magnetic Relaxation. Relaxation in Liquid and Solid Nonmetallic Param-agnetics), Moscow: Nauka, 1975.

    Google Scholar 

  5. Lundin, A.G. and Fedin, E.I., Yadernyi magnitnyi rezonans. Osnovy i primeneniya (Nuclear Magnetic Resonance. Principles and Applications), Novosibirsk: Nauka, 1980.

    Google Scholar 

  6. Slonim, I.Ya. and Lyubimov, A.N., YaMR v polimerakh (NMR in Polymers), Moscow: Khimiya, pp. 3-16.

  7. Dranov, L.I., Kichigin, D.A., Konevskii, V.S., Litvinov, L.A., and Chernina, E.A., Predicting Characteristics of Ruby Crystals Using ESR Methods, Defektoskopiya, 1978, no. 2, pp. 62-66.

  8. Zarsen, M.H. et al., Insight, 1998, vol. 40, no. 7, pp. 505-512.

    Google Scholar 

  9. Berliner, M.A., Izmerenie vlazhnosti (Humidity Measurements), Moscow: Energiya, 1973.

    Google Scholar 

  10. Skripko, A.L., Analytical Applications of NMR Spectroscopy, in: Fizicheskie metody ekspress-analiza sostava veshchestv (Physical Methods of On-line Analysis of Material Compositions), Frunze: ILIM, 1970, p. 28.

    Google Scholar 

  11. Skripko, A.L., Humidity Measurements Based on Proton Magnetic Resonance, Avtomatizatsiya Khimi-cheskikh Proizvodstv (Automation in Chemical Industry), 1961, issue 1, pp. 5-13.

  12. Skripko, A.L., Measuring Humidity of Agricultural Products by Method of Proton Magnetic Resonance, in: Kontrol' vlazhnosti radiospektroskopicheskimi diel'kometricheskimi metodami (Humidity Measurements Using Methods of Radiospectroscopy of Dielectrics), Frunze: ILIM, 1973, pp. 2-13.

    Google Scholar 

  13. Mitchel, J. and Smith, D., Quantitative Analysis of Water. Translated into Russian under the title Akvametriya, Moscow: Khimiya, 1990, pp 457-502.

    Google Scholar 

  14. Palkin, A.P., Rosentahl', O.M., and Sobolev, A.S., A Study of Water State in Quartz Sand by Method of Low-Resolution NMR, Metrologiya, 1976, no. 7, pp. 51-54.

  15. Palkin, A.P., Sobolev, A.S., Pushkarev, V.V., and Koryakov, V.I., Reference Samples for NMR Humidity Measurements, Izmeritel'naya Tekhnika (Measurement Instrumentation), 1978, no. 1, pp. 80-81.

  16. Romanov, V.G., Palkin, A.P., Pushkarev, V.V., Sobolev, A.S., and Koryakov, V.I., Metrological Aspects of NMR Methods in View of Establishing Zero Reference Point on Humidity Scale, Metrologiya, 1976, no. 7, pp. 34-37.

  17. Poole, Ch., Electron Spin Resonance. A Comprehensive Treatise on Experimental Techniques, NewYork, 1967.

  18. Rosentahl, O.M. and Sobolev, A.S., Investigations into Dynamics of Nuclear Paramagnetics, in: Spektroskopicheskie metody issledovaniya tverdofaznykh soedinenii (Spectroscopic Methods for Investigations of Solid-phase Compounds), Sverdlovsk: Ural Research Center, USSR Academy of Sciences, 1980, pp. 48-54.

    Google Scholar 

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Sobolev, A.S., Pudov, V.I. Feasibility of Testing Paramagnetic Materials by Magnetic Resonance Methods: I. Method of Low-Resolution Proton Magnetic Resonance. Russian Journal of Nondestructive Testing 38, 212–219 (2002). https://doi.org/10.1023/A:1020648110007

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