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- W2042275590 abstract "A number of workers have studied the decrease of the intensity of a nuclear magnetic resonance (NMR) line as one adds impurities to the specimen. Usually the intensity of the line is $ensuremath{propto}{(1ensuremath{-}c)}^{n}$, where $c=mathrm{the}mathrm{concentration}mathrm{of}mathrm{the}mathrm{impurities}$ and $n$ is the so-called wipe-out number, i.e., if the impurity is within a sphere containing $n$ neighboring positions its effect is large enough so as to cause a nuclear quadrupole splitting of the host nuclei so that they no longer contribute to the NMR line. Experimentally one can determine $n$. The extension of this type of experiment into the domain of electron spin resonance (ESR), in a very simple way, is described. Also, the wipe-out number for ${mathrm{Mn}}^{2+}$ in two systems, $({mathrm{Zn}}_{1ensuremath{-}c}+{mathrm{Cd}}_{c})mathrm{S}$ and $mathrm{Zn}({mathrm{S}}_{1ensuremath{-}c}+{mathrm{Se}}_{c})$, is measured. One finds $n=157 mathrm{and} 270$, respectively." @default.
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- W2042275590 date "1964-07-20" @default.
- W2042275590 modified "2023-09-25" @default.
- W2042275590 title "Concentration-Dependent Electron Spin Resonance" @default.
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- W2042275590 doi "https://doi.org/10.1103/physrev.135.a479" @default.
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