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- W2045838097 startingPage "1659" @default.
- W2045838097 abstract "Measurements of the nuclear spin-lattice relaxation time ${T}_{1}$ and the spin-spin relaxation time ${T}_{2}$ are reported for nuclear species ${mathrm{Na}}^{23}$, ${mathrm{Rb}}^{85}$, ${mathrm{Rb}}^{87}$, and ${mathrm{Cs}}^{133}$ in the liquid binary alkali-metal alloys over the entire range of concentration of constituents for the alloys Na-Cs, K-Cs, and Rb-Cs. It is found that to within experimental error the Korringa product ${T}_{1}T{K}^{2}$ for a particular constituent is unchanged for an alloy sequence, where $K$ is the Knight shift and $T$ is the absolute temperature. Changes in ${T}_{1}$ for a particular constituent from the ${T}_{1}$ obtained for the pure metal are attributed to changes in the electron density which result in the process of alloying, a process accompanied by large changes in atomic spacing. The changes in ${T}_{1}$ are consistent with nearly constant conduction-electron contact densities at the nucleus ${P}_{F}$. ${T}_{1}$ is coincident with ${T}_{2}$ to within experimental error in most alloys examined." @default.
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- W2045838097 date "1972-03-01" @default.
- W2045838097 modified "2023-10-18" @default.
- W2045838097 title "Nuclear Relaxation in the Liquid Binary Alkali-Metal Alloys" @default.
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- W2045838097 doi "https://doi.org/10.1103/physrevb.5.1659" @default.
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