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Spin-Spin Interaction Constants from the Hyperfine Structure of Pairs of Coupled Ions

J. W. CulvahouseDepartment of Physics and Astronomy, The University of Kansas, Lawrence, Kansas 66044D. P. SchinkeDepartment of Physics and Astronomy, The University of Kansas, Lawrence, Kansas 66044Larry G. PfortmillerDepartment of Physics and Astronomy, The University of Kansas, Lawrence, Kansas 66044
1969en
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Annotatsiya

The hyperfine structure of pairs of paramagnetic ions with identical nuclear spins and a spin-spin interaction effectively of the form ${K}_{0}{\mathrm{S}}_{1}\ifmmode\cdot\else\textperiodcentered\fi{}{\mathrm{S}}_{2}+{K}_{z}{{S}_{1}}^{z}{{S}_{2}}^{z}$ is discussed. The structure of the spectra depends on the ratio $p=\frac{{K}_{0}}{A}$, and a general discussion of the key features of the spectra is given for $p$ in the range zero to infinity. The technique by which the spin-spin interactions may be extracted from the spectra is demonstrated by four examples which correspond to $p$ values of 2, 5.7, 11, and 48. In all cases ${K}_{z}$ is sufficiently large that a major part of the hyperfine structure of the pairs is clear of the spectrum of the isolated ions. For the nearest-neighbor axial pairs of ${\mathrm{Pr}}^{3+}$ in ${\mathrm{La}}_{2}$ ${({\mathrm{C}}_{2}{\mathrm{H}}_{5}\mathrm{S}{\mathrm{O}}_{4})}_{6}$\ifmmode\cdot\else\textperiodcentered\fi{}9${\mathrm{H}}_{2}$O, ${K}_{0}=+0.467$ ${\mathrm{cm}}^{\ensuremath{-}1}$ and ${K}_{z}=\ensuremath{-}0.474$ ${\mathrm{cm}}^{\ensuremath{-}1}$; for ${\mathrm{Pr}}^{3+}$ in La${\mathrm{Cl}}_{3}$, the nearest-neighbor axial pairs have $|{K}_{0}|=2.44$ ${\mathrm{cm}}^{\ensuremath{-}1}$ and $|{K}_{z}|=1.79$ ${\mathrm{cm}}^{\ensuremath{-}1}$, where the $z$ axis here and below is the interionic axis and the trigonal axis of the crystal. The other two examples are provided by ${\mathrm{Co}}^{2+}$ in the nearest-neighbor $X$ sites of ${\mathrm{La}}_{2}$${\mathrm{Mg}}_{3}$${(\mathrm{N}{\mathrm{O}}_{3})}_{12}$\ifmmode\cdot\else\textperiodcentered\fi{}24${\mathrm{H}}_{2}$O; one for the magnetic field along the interionic axis, and the other for the magnetic field perpendicular to this axis. One finds ${K}_{0}=+0.105$ ${\mathrm{cm}}^{\ensuremath{-}1}$, and ${K}_{z}=\ensuremath{-}0.170$ ${\mathrm{cm}}^{\ensuremath{-}1}$.

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