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- W2047954895 abstract "Randomly quenched impurities pin the modulation wave of incommensurate (I) structures and prevent its free motion. However, rapid thermal fluctuations reduce the pinning frequency (or, in the case of structurally incommensurate insulators (SIIS) the phason gap Delta psi ), and they have a significant effect on the spin-lattice relaxation time T1 and the NMR and NQR lineshapes. A T1 and lineshape model is developed for the I phase of SIIS. This model, which includes impurity pinning and thermal fluctuations, is used to explain 35Cl(1) T1 and experimental lineshape data for a pure Rb2ZnCl4 crystal. The results indicate that, while the impurities are of a strong-pinning symmetry-breaking type very close to the paraelectric-to-incommensurate transition temperature TI, thermal fluctuations significantly reduced the impurity-induced pinning." @default.
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- W2047954895 date "1993-12-13" @default.
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- W2047954895 title "Impurity pinning and thermally excited collective motions in incommensurately modulated structures" @default.
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