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- W4248666362 abstract "The anisotropy, magnetostriction, and linewidth of iridium-substituted yttrium iron garnet single crystals of the composition ${mathrm{Y}}_{3ensuremath{-}x}{A}_{x}{mathrm{Fe}}_{5ensuremath{-}yensuremath{-}z}{mathrm{Ir}}_{y}{B}_{z}{mathrm{O}}_{12ensuremath{-}ensuremath{delta}}{mathrm{F}}_{ensuremath{delta}}$ ($A={mathrm{Ca}}^{+2},{mathrm{Pb}}^{2+} mathrm{and} B={mathrm{Fe}}^{2+},{mathrm{Si}}^{4+},{mathrm{Zn}}^{2+}$) have been investigated by means of ferromagnetic resonance. Chemical-analysis data of Ir, Zn, Ca and of the impurities Pb, Si, and F are given for all crystals. The anisotropy and magnetostriction measurements were carried out at 9.15 GHz in the temperature range 4.2-500 K. The anisotropy contributions $ensuremath{Delta}{K}_{1}$ and $ensuremath{Delta}{K}_{2}$ caused by the low-spin $5{d}^{5}$ ${mathrm{lr}}^{4+}$ ions are positive with $ensuremath{Delta}{K}_{2}>>ensuremath{Delta}{K}_{1}$ and the magnetostriction contributions $ensuremath{Delta}{ensuremath{lambda}}_{100}$ and $ensuremath{Delta}{ensuremath{lambda}}_{111}$ are negative with $|ensuremath{Delta}{ensuremath{lambda}}_{100}|ensuremath{gg}ensuremath{Delta}{ensuremath{lambda}}_{111}$. The temperature dependence of both the anisotropy and magnetostriction is compared with calculations performed in the framework of the single-ion theory. The resonance linewidth showing a maximum at $T=370$ K could be qualitatively interpreted by the longitudinal relaxation model assigning a relaxation time of ${10}^{ensuremath{-}11}$ sec to the ${mathrm{lr}}^{4+}$ ions." @default.
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- W4248666362 date "1973-11-01" @default.
- W4248666362 modified "2023-10-04" @default.
- W4248666362 title "Anisotropy and Magnetostriction of Iridium-Substituted Yttrium Iron Garnet" @default.
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- W4248666362 doi "https://doi.org/10.1103/physrevb.8.4274" @default.
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