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- W2063314083 startingPage "11962" @default.
- W2063314083 abstract "We have investigated the resonance frequency ${mathit{f}}_{mathit{r}}$, the longitudinal and the transverse relaxation rates ${mathit{T}}_{1}^{mathrm{ensuremath{-}}1}$, ${mathit{T}}_{2}^{mathrm{ensuremath{-}}1}$, of $^{153}mathrm{Eu}$ in fields up to 2 T for low temperatures, Tensuremath{le}4.2 Kensuremath{ll}${mathit{T}}_{mathit{c}}$=16.5 K. Based on exchange constants from neutron data, a detailed analysis of the field dependence of ${mathit{f}}_{mathit{r}}$ reveals a magnetic anisotropy field ${mathit{B}}_{mathit{a}}$=4 mT parallel to [100], which is much smaller than that proposed in previous NMR work but which is consistent with early ferromagnetic-resonance results. ${mathit{T}}_{1}^{mathrm{ensuremath{-}}1}$ appears to be dominated by the dipole-induced two-magnon relaxation. First evidence for a significant on-site contribution of the Suhl-Nakamura interaction to ${mathit{T}}_{2}^{mathrm{ensuremath{-}}1}$ is provided, caused by the very small spin-wave stiffness in this material." @default.
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- W2063314083 date "1993-05-01" @default.
- W2063314083 modified "2023-10-14" @default.
- W2063314083 title "Nuclear magnetic resonance and relaxation in the spin-wave regime of the dipolar Heisenberg ferromagnet EuS" @default.
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- W2063314083 doi "https://doi.org/10.1103/physrevb.47.11962" @default.
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