1998
DOI: 10.1134/1.567649
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Electron spin resonance and nuclear magnetic resonance of sodium macrostructures in strongly irradiated NaCl-K crystals: Manifestation of quasi-one-dimensional behavior of electrons

Abstract: Electron spin resonance and nuclear magnetic resonance of sodium macrostructures in strongly irradiated NaCl-K crystals: Manifestation of quasi-one-dimensional behavior of electrons.

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Cited by 3 publications
(17 citation statements)
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“…1a), g ¼ 2.0014 (Fig. 1c), at the melting point the ESR linewidth increases by an amount of $5.5 G, an isotropic Knight shift K ¼ 0.11% (see [3,4]). The ESR linewidth depends on the defect state of the damaged crystals, and at 300 K our NaCl-K and NaCl-KBF 4 samples yield linewidths of 21 and 18 G, respectively (Fig.…”
Section: High Temperature (Range I)mentioning
confidence: 95%
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“…1a), g ¼ 2.0014 (Fig. 1c), at the melting point the ESR linewidth increases by an amount of $5.5 G, an isotropic Knight shift K ¼ 0.11% (see [3,4]). The ESR linewidth depends on the defect state of the damaged crystals, and at 300 K our NaCl-K and NaCl-KBF 4 samples yield linewidths of 21 and 18 G, respectively (Fig.…”
Section: High Temperature (Range I)mentioning
confidence: 95%
“…There is considerable interest in electron-irradiated NaCl-X crystals (X ¼ K or KBF 4 ) since at high doses and large dose rates non-equilibrium structural changes appear and conducting channels, consisting of extremely small metallic sodium particles, might be formed [1][2][3][4]. The electronic and magnetic properties of these crystals are similar to those of quasi-onedimensional conducting and polymeric compound RbC 60 (see [5,6]).…”
Section: Introductionmentioning
confidence: 95%
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