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- W2022632043 abstract "Using the expressions derived earlier for the anisotropy of spin-lattice relaxation for Kramers doublets in cubic crystals, numerical estimates have been made of the anisotropies for ${mathrm{Co}}^{2+}$ in MgO and ${mathrm{Yb}}^{3+}$ in Ca${mathrm{F}}_{2}$ crystals. The results show that the ${ensuremath{Gamma}}_{3g}$ mode of the complex formed by the nearest neighbors around the ${mathrm{Co}}^{2+}$ ion contribute most significantly to the relaxation rate at low temperature, and the anisotropy varies as {$1ensuremath{-}({l}^{4}+{m}^{4}+{n}^{4})$}, where $l$, $m$, $n$ are the direction cosines of the Zeeman field about the crystal axes. On the other hand, for ${mathrm{Yb}}^{3+}$ in Ca${mathrm{F}}_{2}$, one of the two ${ensuremath{Gamma}}_{5g}$ modes is most effective for relaxation processes, and this causes an anisotropy which is given by (${l}^{4}+{m}^{4}+{n}^{4}$). The implications of these results for other paramagnetic crystals are discussed." @default.
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- W2022632043 date "1967-12-10" @default.
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- W2022632043 title "Anisotropy of the Spin-Lattice Relaxation for the Kramers Doublets in Cubic Crystals. II. Analysis of Specific Cases" @default.
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- W2022632043 doi "https://doi.org/10.1103/physrev.164.424" @default.
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