Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2

Research output: Contribution to journalArticleResearchpeer review

Authors

  • P. Heitjans
  • B. Bader
  • H. J. Stöckmann
  • K. Dörr
  • G. Kiese
  • H. Ackermann
  • P. Freiländer
  • W. Müller-Warmuth
  • K. Meise-Gresch

External Research Organisations

  • Philipps-Universität Marburg
  • Institut Laue-Langevin
  • University of Münster
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Details

Original languageEnglish
Pages (from-to)597-600
Number of pages4
JournalHyperfine Interactions
Volume16
Issue number1-4
Publication statusPublished - Dec 1983
Externally publishedYes

Abstract

Nuclear spin-lattice relaxation in Li20·2Si02 glass below 200 K has been studied using the asymmetric Β-decay radiation of polarized8Li (T1/2=0.Bs) nuclei produced by capture of polarized neutrons. Transients of the8Li polarization follow an exp(-√E/T1) law. The dependence of the spin-lattice relaxation rate ⊥-11 on temperature T and magnetic field B can roughly be described by T-11∼T/B. The interpretation is based on the assumption that for8Li, contrary to7Li in the same glass, spin-diffusion is absent and that each probe nucleus is coupled by quadrupolar interaction to an individual distribution of nearby centres typical of glasses. The fluctuation of these centres causing relaxation may be induced by either a multi-phonon or a thermally activated motional process.

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Cite this

Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2. / Heitjans, P.; Bader, B.; Stöckmann, H. J. et al.
In: Hyperfine Interactions, Vol. 16, No. 1-4, 12.1983, p. 597-600.

Research output: Contribution to journalArticleResearchpeer review

Heitjans, P, Bader, B, Stöckmann, HJ, Dörr, K, Kiese, G, Ackermann, H, Freiländer, P, Müller-Warmuth, W & Meise-Gresch, K 1983, 'Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2', Hyperfine Interactions, vol. 16, no. 1-4, pp. 597-600. https://doi.org/10.1007/BF02147324
Heitjans, P., Bader, B., Stöckmann, H. J., Dörr, K., Kiese, G., Ackermann, H., Freiländer, P., Müller-Warmuth, W., & Meise-Gresch, K. (1983). Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2. Hyperfine Interactions, 16(1-4), 597-600. https://doi.org/10.1007/BF02147324
Heitjans P, Bader B, Stöckmann HJ, Dörr K, Kiese G, Ackermann H et al. Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2. Hyperfine Interactions. 1983 Dec;16(1-4):597-600. doi: 10.1007/BF02147324
Heitjans, P. ; Bader, B. ; Stöckmann, H. J. et al. / Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2. In: Hyperfine Interactions. 1983 ; Vol. 16, No. 1-4. pp. 597-600.
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TY - JOUR

T1 - Low-temperature spin-lattice relaxation of8Li in the glass Li2O·2SiO2

AU - Heitjans, P.

AU - Bader, B.

AU - Stöckmann, H. J.

AU - Dörr, K.

AU - Kiese, G.

AU - Ackermann, H.

AU - Freiländer, P.

AU - Müller-Warmuth, W.

AU - Meise-Gresch, K.

PY - 1983/12

Y1 - 1983/12

N2 - Nuclear spin-lattice relaxation in Li20·2Si02 glass below 200 K has been studied using the asymmetric Β-decay radiation of polarized8Li (T1/2=0.Bs) nuclei produced by capture of polarized neutrons. Transients of the8Li polarization follow an exp(-√E/T1) law. The dependence of the spin-lattice relaxation rate ⊥-11 on temperature T and magnetic field B can roughly be described by T-11∼T/B. The interpretation is based on the assumption that for8Li, contrary to7Li in the same glass, spin-diffusion is absent and that each probe nucleus is coupled by quadrupolar interaction to an individual distribution of nearby centres typical of glasses. The fluctuation of these centres causing relaxation may be induced by either a multi-phonon or a thermally activated motional process.

AB - Nuclear spin-lattice relaxation in Li20·2Si02 glass below 200 K has been studied using the asymmetric Β-decay radiation of polarized8Li (T1/2=0.Bs) nuclei produced by capture of polarized neutrons. Transients of the8Li polarization follow an exp(-√E/T1) law. The dependence of the spin-lattice relaxation rate ⊥-11 on temperature T and magnetic field B can roughly be described by T-11∼T/B. The interpretation is based on the assumption that for8Li, contrary to7Li in the same glass, spin-diffusion is absent and that each probe nucleus is coupled by quadrupolar interaction to an individual distribution of nearby centres typical of glasses. The fluctuation of these centres causing relaxation may be induced by either a multi-phonon or a thermally activated motional process.

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U2 - 10.1007/BF02147324

DO - 10.1007/BF02147324

M3 - Article

AN - SCOPUS:34250144248

VL - 16

SP - 597

EP - 600

JO - Hyperfine Interactions

JF - Hyperfine Interactions

SN - 0304-3834

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